•½�¬‚Q‚T”N‚RŒŽ‚R‚O“ú
Œ¤‹†‹Æ�шꗗ•\
�@�@�@�@�@�@�@�@�@�@ �¸“Ç•t‚«˜_•¶ŽGŽ��F‚T‚X•Ò
�@�@�@�@�@�@�@�@�@�@ �¸“Ç•t‚«˜_•¶ŽGŽ��i�‘�Û‰ï‹c�j�F‚Q‚V•Ò
�@�@�@�@�@�@�@�@�@�@ �‘�Û‰ï‹cƒvƒ�ƒV�[ƒfƒBƒ“ƒOƒX“™�F‚T‚X•Ò
�@�@�@�@�@�@�@�@�@�@ Œû“ª”•\�i�‘�Û‰ï‹c�j�F‚R‚WŒ�
�@�@�@�@�@�@�@�@�@�@ ˜a•¶ŽGŽ��iŒ¤‹†•ñ���j�F‚X•Ò
�@�@�@�@�@�@�@�@�@�@ Šw‰ïŽ�‰ð�à�F‚P•Ò
�@�@�@�@�@�@�@�@�@�@ Œû“ª”•\�i�‘“à‰ï‹c�j�F‚P‚O‚TŒ�
�@�@�@�@�@�@�@�@�@�@ Žó�Ü�F‚SŒ�
�@�@�@�@�@�@�@�@�@�@ ‚»‚Ì‘¼�iŒ¤‹†•ñ��“™�F—�Œ¤�j�F‚P‚T•Ò
�@�@�@�@�@�@�@�@�@�@ ‚»‚Ì‘¼�iŒ¤‹†•ñ��“™�F�À’Ã�‚�ê�j�F‚P‚Q•Ò
�@�@�@�@�@�@�@�@�@�@ ‚»‚Ì‘¼�iŒ¤‹†•ñ��“™�F‚»‚Ì‘¼�j�F‚T•Ò
�@�@�@�@�@�@�@�@�@�@ ‰ÈŒ¤”ïŽæ“¾�F‚P‚PŒ�
�@�@�@�@�@�@�@�@�@�@ Œ¤‹†”ï�\�¿�F‚QŒ�
�@�@�@�@�@�@�@�@�@�@ ‘åŠw‰@�W’†�u‹`“™�F‚UŒ�
�@�@�@�@�@�@�@�@�@�@ �‘�ÛƒTƒ}�[ƒXƒN�[ƒ‹�u‹`�F‚PŒ�
�@�@�@�@�@�@�@�@�@�@ ˆË—Š�u‰‰�F‚PŒ�
�@�@�@�@�@�@�@�@�@�@ Šw‰ïŠˆ“®
�@�@�@�@�@�@�@�@�@�@ ŠwˆÊ˜_•¶
�@�@�@�@�@�@�@�@�@�@ Œ¤‹†—ð
�¸“Ç•t‚«˜_•¶ŽGŽ�
1.�@�@�@ Pion-nucleus scattering in the GeV region,
�@�@�@�@ M. Mizoguchi, K. Sumiyoshi, T. Kajino and
H. Toki,
�@�@�@�@ Progress of Theoretical Physics 81
(1989) 1217-1224.
2.�@�@�@ Baryon evaporation from cosmic quark-gluon
plasma,
�@�@�@�@ K. Sumiyoshi, K. Kusaka, T. Kamio and T.
Kajino,
�@�@�@�@ Physics Letters B225 (1989) 10-14.
3.�@�@�@ Evolution of baryon number density during
the cosmic quark-hadron phase transition,
�@�@�@�@ K. Sumiyoshi, T. Kajino, C. R. Alcock and
G. J. Mathews,
�@�@�@�@ Physical Review D42 (1990)
3963-3968.
4.�@�@�@ Supernova and neutron stars with
relativistic equations of state,
�@�@�@�@ K. Sumiyoshi, H. Toki and R. Brockmann,
�@�@�@�@ Physics Letters B276 (1992) 393-397.
5.�@�@�@ Thermal history of the string universe,
�@�@�@�@ H. Cateau and K. Sumiyoshi,
�@�@�@�@ Physical Review D46 (1992)
2366-2380.
6.�@�@�@ Comparison of the relativistic mean field
theory and the Skyrme Hartree-Fock theory
�@�@�@�@ for properties of nuclei and nuclear
matter,
�@�@�@�@ K. Sumiyoshi, D. Hirata, H. Toki and H.
Sagawa,
�@�@�@�@ Nuclear Physics A552 (1993) 437-450.
7.�@�@�@ Relativistic equation of state of nuclear
matter for the supernova explosion and the birth of neutron stars,
�@�@�@�@ K. Sumiyoshi and H. Toki,
�@�@�@�@ Astrophysical Journal 422 (1994)
700-718.
8.�@�@�@ Relativistic mean field theory with
non-linear s and w
terms for neutron stars and supernovae,
�@�@�@�@ K. Sumiyoshi, H. Kuwabara and H. Toki
�@�@�@�@ Nuclear Physics A581 (1995) 725-746.
9.�@�@�@ Influence of the symmetry energy on the
birth of neutron stars and supernova neutrinos,
�@�@�@�@ K. Sumiyoshi, H. Suzuki and H. Toki,
�@�@�@�@ Astronomy and Astrophysics 303
(1995) 475-482.
10.�@�@ Neutron star profiles in relativistic
Brueckner Hartree Fock theory,
�@�@�@�@ K. Sumiyoshi, K. Oyamatsu and H. Toki,
�@�@�@�@ Nuclear Physics A595 (1995) 327-345.
11.�@�@ Study of light nuclei in the relativistic
mean field theory and the non-relativistic Skyrme-Hartree-Fock theory,
�@�@�@�@ Y. Sugahara, K. Sumiyoshi, H. Toki, A.
Ozawa and I. Tanihata,
�@�@�@�@ Progress of Theoretical Physics 96
(1996) 1165-1178.
12.�@�@ Triaxial deformation of unstable nuclei in
the relativistic mean field theory,
�@�@�@�@ D. Hirata, K. Sumiyoshi, B.V. Carlson, H.
Toki, and I. Tanihata,
�@�@�@�@ Nuclear Physics A609 (1996) 131-146.
13.�@�@ Performance of parallel solution of a
block-tridiagonal linear system on Fujitsu VPP500,
�@�@�@�@ K. Sumiyoshi and T. Ebisuzaki,
�@�@�@�@ Parallel Computing 24 (1998)
287-304.
14.�@�@ The fate of a neutron star just below the
minimum mass: does it explode?
�@�@�@�@ K. Sumiyoshi, S. Yamada, H. Suzuki and W.
Hillebrandt,
�@�@�@�@ Astronomy and Astrophysics, 334
(1998) 159-168.
15.�@�@ Can the equation of state of asymmetric
matter be studied using unstable nuclei?
�@�@�@�@ K. Oyamatsu, I. Tanihata, Y. Sugahara, K.
Sumiyoshi and H. Toki,
�@�@�@�@ Nuclear Physics A634 (1998) 3-14.
16.�@�@ Relativistic equation of state of nuclear
matter for supernova and neutron star,
�@�@�@�@ H. Shen, H. Toki, K. Oyamatsu and K. Sumiyoshi,
�@�@�@�@ Nuclear Physics A637 (1998) 435-450.
17.�@�@ Relativistic equation of state of nuclear
matter for supernova explosion,
�@�@�@�@ H. Shen, H. Toki, K. Oyamatsu and K.
Sumiyoshi,
�@�@�@�@ Progress of Theoretical Physics 100
(1998) 1013-1031.
18.�@�@ Thermal history and structure of rotating
proto-neutron stars with relativistic equation of state,
�@�@�@�@ K. Sumiyoshi, J. M. Ibanez and J. V.
Romero,
�@�@�@�@ Astronomy and Astrophysics Supplement 134
(1999) 39-52.
19.�@�@ Nuclear radii of 17,19B and 14Be
�@�@�@�@ T. Suzuki, R. Kanungo, O. Bochkarev, L.
Chulkov, D. Cortina, M. Fukuda, H. Geissel, M. Hellstroem,
�@�@�@�@ M. Ivanov, R. Janik, K. Kimura, T.
Kobayashi, A. A. Korsheninnikov, G. Muenzenberg, F. Nickel,
�@�@�@�@ A. A. Ogloblin, A. Ozawa, M. Pfuetzner, V.
Pribora, H. Simon, B. Sitar, P. Strmen, K. Sumiyoshi,
�@�@�@�@ K. Suemmerer, I. Tanihata, M. Winkler, K.
Yoshida,
�@�@�@�@ Nuclear Physics A658 (1999) 313-326.
20.�@�@ The absence of cyclotron lines in neutron
star atmospheres with super-strong magnetic fields,
�@�@�@�@ O. Nishimura, K. Sumiyoshi and T.
Ebisuzaki,
�@�@�@�@ Publications of the Astronomical Society of
Japan 52 (2000) 167-173.
21.�@�@ Hydrodynamical study of neutrino-driven wind
as an r-process site,
�@�@�@�@ K. Sumiyoshi, H. Suzuki, K. Otsuki, M.
Terasawa and S. Yamada,
�@�@�@�@ Publications of the Astronomical Society of
Japan 52 (2000), 601-611.
22.�@�@ New nuclear reaction flow during r-process
nucleosynthesis in supernovae:
�@�@�@�@ critical role of light neutron-rich nuclei,
�@�@�@�@ M. Terasawa, K. Sumiyoshi, T. Kajino, G.
Mathews and I. Tanihata
�@�@�@�@ Astrophysical Journal 562 (2001)
470-479.
23.�@�@ R-process in prompt supernova explosions
revisited,
�@�@�@�@ K. Sumiyoshi, M. Terasawa, G. J. Mathews,
T. Kajino, S. Yamada and H. Suzuki,
�@�@�@�@ Astrophysical Journal 562 (2001)
880-886.
24.�@�@ Relativistic Hartree-Bogoliubov approach for
nuclear matter with non-linear coupling terms,
�@�@�@�@ S. Sugimoto, K. Sumiyoshi and H. Toki,
�@�@�@�@ Physical. Review C64�@ (2001) 054310 (5 pages).
25.�@�@ Astrophysical reaction rate for a(an, g)9Be by photodisintegration,
�@�@�@�@ K. Sumiyoshi, H. Utsunomiya, S. Goko and T.
Kajino,
�@�@�@�@ Nuclear Physics A709 (2002) 467-486.
26.�@�@ R-process nucleosynthesis in neutrino-driven
winds from a typical neutron star with M=1.4Msolar,
�@�@�@�@ M. Terasawa, K. Sumiyoshi, S. Yamada, H. Suzuki and T. Kajino,
�@�@�@�@ Astrophysical Journal, 578 (2002) L137-L140.
27.�@�@ Liquid-gas phase transition of supernova matter and its relation
to nucleosynthesis,
�@�@�@�@ C. Ishizuka, A. Ohnishi and K. Sumiyoshi,
�@�@�@�@ Nuclear Physics A723 (2003) 517-543.
28.�@�@ Nucleosynthesis of light elements and heavy
r-process elements through the n-process
�@�@�@�@ in supernova explosions,
�@�@�@�@ T. Yoshida, M. Terasawa, T. Kajino and K.
Sumiyoshi,
�@�@�@�@ Astrophysical Journal 600 (2004)
204-213.
29.�@�@ Properties of a relativistic equation of state for collapse-driven
supernovae,
�@�@�@�@ K. Sumiyoshi, H. Suzuki, S. Yamada and H. Toki,
�@�@�@�@ Nuclear Physics A730 (2004) 227-251.
30.�@�@ Gravitational radiation from rotational core collapse:
�@�@�@�@ effects of magnetic fields and realistic equation of states,
�@�@�@�@ K. Kotake, S. Yamada, K. Sato, K. Sumiyoshi, H. Ono, H. Suzuki,
�@�@�@�@ Physical Review D69 (2004) 124004 (11 pages).
31.�@�@ Postbounce evolution of core-collapse supernovae: long-term
effects of equation of state,
�@�@�@�@ K. Sumiyoshi, S. Yamada, H. Suzuki, H. Shen, S. Chiba and H.
Toki,
�@�@�@�@ Astrophysical Journal 629 (2005) 922-932.
32.�@�@ Effects of magnetic fields on proto-neutron star winds,
�@�@�@�@ H. Ito, S. Yamada, K. Sumiyoshi and S. Nagataki,
�@�@�@�@ Progress of Theoretical Physics 114 (2005) 995-1020.
33.�@�@ Gravitational collapse and neutrino emission of population III
massive stars,
�@�@�@�@ K. Nakazato, K. Sumiyoshi and S. Yamada,
�@�@�@�@ Astrophysical Journal 645 (2006) 519-533.
34.�@�@ Neutrino signals from the formation of a black hole: A probe of
the equation of state of dense matter,
�@�@�@�@ K. Sumiyoshi, S. Yamada, H. Suzuki and S. Chiba,
�@�@�@�@ Physical Review Letters 97 (2006) 091101 (4 pages).
35.�@�@ Variational calculation for equation of state of nuclear matter at
finite temperatures,
�@�@�@�@ H. Kanzawa, K. Oyamatsu, K. Sumiyoshi and M. Takano,
�@�@�@�@ Nuclear Physics A791 (2007) 232-250.
36.�@�@ Numerical study on stellar core collapse and neutrino emission:
�@�@�@�@ probe into the spherically symmetric black hole progenitors with
3-30Msolar iron cores,
�@�@�@�@ K. Nakazato, K. Sumiyoshi and S. Yamada,
�@�@�@�@ Astrophysical Journal 666 (2007) 1140-1151.
37.�@�@ Dynamics and neutrino signal of black hole formation in
non-rotating failed supernovae.
�@�@�@�@ I. EOS dependence,
�@�@�@�@ K. Sumiyoshi, S. Yamada and H. Suzuki,
�@�@�@�@ Astrophysical Journal 667 (2007) 382-394.
38.�@�@ Alfven wave-driven supernova explosion,
�@�@�@�@ T. K. Suzuki, K. Sumiyoshi and S. Yamada,
�@�@�@�@ Astrophysical Journal 678 (2008) 1200-1206.
39.�@�@ Astrophysical implications of equation of state for hadron-quark
mixed phase:
�@�@�@�@ compact stars and stellar collapses,
�@�@�@�@ K. Nakazato, K. Sumiyoshi and S. Yamada,
�@�@�@�@ Physical Review D77 (2008) 103006 (12 pages).
�@�@�@�@
40.�@�@ Appearance of light clusters in post-bounce evolution of
core-collapse supernovae,
�@�@�@�@ K. Sumiyoshi and G. Roepke,
�@�@�@�@ Physical Review C77 (2008) 055804 (5 pages).
41.�@�@ Tables of hyperonic matter equation of state for core-collapse
supernovae,
�@�@�@�@ C. Ishizuka, A. Ohnishi, K. Tsubakihara, K. Sumiyoshi and S.
Yamada,
�@�@�@�@ Journal of Physics G: Nuclear and Particle Physics 35
(2008) 085201 (19 pages).
42.�@�@ Dynamics and neutrino signal of black hole formation in
non-rotating failed supernovae.
�@�@�@�@ II. progenitor dependence,
�@�@�@�@ K. Sumiyoshi, S. Yamada and H. Suzuki,
�@�@�@�@ Astrophysical Journal 688 (2008) 1176-1185.
43.�@�@ Oscillation and future detection of failed supernova neutrinos
from black hole forming collapse,
�@�@�@�@ K. Nakazato, K. Sumiyoshi, H. Suzuki and S. Yamada,
�@�@�@�@ Physical Review D78 (2008) 083014 (14 pages).
44.�@�@ Emergence of hyperons in failed supernovae: trigger of the black
hole formation,
K.
Sumiyoshi, C. Ishizuka, A. Ohnishi, S. Yamada and H. Suzuki,
Astrophysical
Journal 690 (2009) L43-L46.
45.�@�@ Non-uniform matter in neutron star crusts studied by the
variational method
�@�@�@�@ with Thomas-Fermi calculations,
�@�@�@�@ H. Kanzawa, M. Takano, K. Oyamatsu and K. Sumiyoshi,
�@�@�@�@ Progress of Theoretical Physics 122 (2009) 673-691.
46.�@�@ Neutrino deuteron reaction in the heating mechanism of
core-collapse supernovae,
�@�@�@�@ S. Nakamura, K. Sumiyoshi and T. Sato,
�@�@�@�@ Physical Review C80 (2009) 035802 (6 pages).
47.�@�@ Neutrino oscillation and expected event rate of supernova
neutrinos in adiabatic explosion model,
�@�@�@�@ S. Kawagoe, T. Yoshida, T. Kajino, H. Suzuki, K. Sumiyoshi and
S. Yamada,
�@�@�@�@ Physical Review D81 (2010) 123014 (17 pages).
48.�@�@ Exploring hadron physics in black hole formations: A new promising
target of neutrino astronomy,
�@�@�@�@ K. Nakazato, K. Sumiyoshi, H. Suzuki and S. Yamada,
�@�@�@�@ Physical Review D81 (2010) 083009 (6 pages).
49.�@�@ Impact of quarks and pions on dynamics and neutrino signal of
black hole formation,
�@�@�@�@ in non-rotating stellar core collapse
�@�@�@�@ K. Nakazato, K. Sumiyoshi and S. Yamada,
�@�@�@�@ Astrophysical Journal 721 (2010) 1284-1294.
50.�@�@ A new baryonic equation of state at sub-nuclear densities for
core-collapse simulations,
�@�@�@�@ S. Furusawa, S. Yamada, K. Sumiyoshi and H. Suzuki,
�@�@�@�@ Astrophysical Journal 738 (2011) 178 (17 pages).
51.�@�@ The equation of state and composition of hot, dense matter in
core-collapse supernovae,
�@�@�@�@ S.I. Blinnikov, I.V. Panov, M.A.Rudzsky and K. Sumiyoshi,
�@�@�@�@ Astronomy & Astrophysics 535 (2011) A37 (13 pages).
52.�@�@ Relativistic equation of state for core-collapse supernova
simulations,
�@�@�@�@ H. Shen, H. Toki, K. Oyamatsu and K. Sumiyoshi,
�@�@�@�@ Astrophysical Journal, Supplement Series 197 (2011) 20
(14 pages).
53.�@�@ Possibility of the QCD cricital point sweep during the black hole
formation,
�@�@�@�@ A. Ohnishi, H. Ueda, T. Z. Nakano, M. Ruggieri and K. Sumiyoshi,
�@�@�@�@ Physics Letters B 704 (2011) 284-290.
54.�@�@ Hyperon matter and black hole formation in failed supernovae,
�@�@�@�@ K. Nakazato, K. Sumiyoshi, A. Ohnishi, S. Yamada and H. Suzuki,
�@�@�@�@ Astrophysical Journal 745 (2012) 197 (10 pages).
55.�@�@ Neutrino Transfer in Three Dimension for Core-Collapse Supernovae.
I. Static Configurations,
�@�@�@�@ K. Sumiyoshi and S. Yamada
�@�@�@�@ Astrophysical Journal Supplement Series 199 (2012) 17 (32
pages).
56.�@�@ Core-Collapse Supernovae as Supercomputing Science:
�@�@�@�@ a status report toward 6D simulations with exact Boltzmann
neutrino transport in full general relativity,
�@�@�@�@ K. Kotake, K. Sumiyoshi, S. Yamada, T. Takiwaki, T. Kuroda, Y.
Suwa and H. Nagakura,
�@�@�@�@ Progress of Theoretical and Experimental Physics (2012), 01A301
(34 pages).
�@�@�@�@ (Invited review paper)
57.�@�@ A parameter optimization technique for a weighted Jacobi-type
preconditioner,
�@�@�@�@ A. Imakura, T. Sakurai, K. Sumiyoshi and H. Matsufuru,
�@�@�@�@ Japan Society for Industrial and Applied Mathematics (JSIAM) 4
(2012) 41-44.
58.�@�@ Supernova neutrino light curves and spectra for various progenitor
stars:
�@�@�@�@ From core collapse to proto-neutron star cooling,
�@�@�@�@ K. Nakazato, K. Sumiyoshi, H. Suzuki, T. Totani, H. Umeda and S.
Yamada,
�@�@�@�@ Astrophysical Journal Supplement Series 205 (2013) 2 (17
pages).
59.�@�@ A comparative study of statistical models for nuclear equation of
state of stellar matter,
�@�@�@�@ N. Buyukcizmeci, A. S. Botvina, I. N. Mishustin, R. Ogul, M.
Hempel, J. Schaffner-Bielich,
�@�@�@�@ F.-K. Thielemann, S. Furusawa, K. Sumiyoshi, S. Yamada and H.
Suzuki,
�@�@�@�@ Nuclear Physics A907 (2013) 13-54.
�¸“Ç•t‚«˜_•¶ŽGŽ��i�‘�Û‰ï‹c�j
1.�@�@�@ Survival condition of primordial strange
quark matter with low baryon penetrability,
�@�@�@�@ K. Sumiyoshi and T. Kajino,
�@�@�@�@ in Proceedings of the International
Workshop on Strange Quark Matter in Physics and Astrophysics,
�@�@�@�@ Aahus, Denmark, 1991,
�@�@�@�@ Nuclear Physics B24 (1991) 80c-83c.
2.�@�@�@ Relativistic many body approach for unstable
nuclei and supernova,
�@�@�@�@ H. Toki, D. Hirata, Y. Sugahara, K.
Sumiyoshi and I. Tanihata,
�@�@�@�@ in Proceedings of the International
Symposium on Physics of Unstable Nuclei, Niigata, Japan, 1994,
�@�@�@�@ Nuclear Physics A588 (1995)
357c-364c.
3.�@�@�@ A systematic study of even-even nuclei up to
the drip lines within the relativistic mean field framework,
�@�@�@�@ in Proceedings of the fourth International
Conference on Radioactive Nuclear Beams, Ohmiya, Japan, 1996,
�@�@�@�@ D. Hirata, K. Sumiyoshi, I. Tanihata, Y.
Sugahara, T. Tachibana and H. Toki,
�@�@�@�@ Nuclear Physics A616 (1997)
438c-445c.
4.�@�@�@ Relativistic many body theory for unstable
nuclei and astrophysics,
�@�@�@�@ H. Toki, H. Shen, K. Sumiyoshi, D. Hirata,
Y. Sugahara and I. Tanihata
�@�@�@�@ in Proceedings of the International
Workshop on Physics with Radioactive Nuclear Beams, Puri, India, 1998,
�@�@�@�@ Journal of Physics G24 (1998) 1479-1489.
5.�@�@�@ Relativistic simulations of supernovae and
the r-process:
�@�@�@�@ new relativistic EOS and new nuclear
reaction network,
�@�@�@�@ K. Sumiyoshi, M. Terasawa, H. Suzuki, S.
Yamada, H. Toki, G. J. Mathews and T. Kajino,
�@�@�@�@ in Proceedings of the International Conference
on Nuclei in the Cosmos 2000,
�@�@�@�@ University of Aarhus, Denmark, 2000,
�@�@�@�@ Nuclear Physics A688 (2001)
478c-480c.
6.�@�@�@ Photodisintegration of 9Be and
the reaction rate for a(an, g) 9Be
�@�@�@�@ H. Utsunomiya, Y. Yonezawa, H. Akimune, T.
Yamagata, M. Ohta, H. Toyokawa, H. Ohgaki and
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ in Proceedings of the International
Conference on Nuclei in the Cosmos 2000,
�@�@�@�@ University of Aarhus, Denmark, 2000,
�@�@�@�@ Nuclear Physics A688 (2001)
340c-343c.
7.�@�@�@ New nuclear reaction flow during r-process
nucleosynthesis in supernovae:
�@�@�@�@ the critical role of light neutron-rich
nuclei,
�@�@�@�@ M. Terasawa, K. Sumiyoshi, T. Kajino, I.
Tanihata, G. J. Mathews and K. Langanke,
�@�@�@�@ in Proceedings of the International
Conference on Nuclei in the Cosmos 2000,
�@�@�@�@ University of Aarhus, Denmark, 2000,
�@�@�@�@ Nuclear Physics A688 (2001)
581c-583c.
8.�@�@�@ R-process nucleosynthesis in supernova
explosions: from unstable nuclei to observation of stars,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ in Proceedings of the Yukawa International
Seminar on Physics of Unstable Nuclei (YKIS01),
�@�@�@�@ Yukawa Institute for Theoretical Physics
(YITP), Kyoto, 2001,
�@�@�@�@ Progress of Theoretical Physics Supplement,
146 (2002) 258-267.
9.�@�@�@ Fragment distribution in coexistence phase
of supernova matter,
�@�@�@�@ C. Ishizuka, A. Ohnishi and K. Sumiyoshi,
�@�@�@�@ in Proceedings of the Yukawa International
Seminar on Physics of Unstable Nuclei (YKIS01),
�@�@�@�@ Yukawa Institute for Theoretical Physics
(YITP), Kyoto, 2001,
�@�@�@�@ Progress of Theoretical Physics Supplement,
146 (2002) 373-377.
10.�@�@ Nucleosynthesis and characteristics in
liquid-gas coexistence phase of supernova matter,
�@�@�@�@ C. Ishizuka, A. Ohnishi and K. Sumiyoshi,
�@�@�@�@ in Proceedings of the Yukawa International
Seminar on Physics of Unstable Nuclei (YKIS01),
�@�@�@�@ Yukawa Institute for Theoretical Physics
(YITP), Kyoto, 2001,
�@�@�@�@ Progress of Theoretical Physics Supplement,
146 (2002) 569-570.
11.�@�@ Photoneutron cross sections for nuclear
astrophysics,
�@�@�@�@ H. Utsunomiya, H. Akimune, S. Goko, T.
Yamagata, M. Ohta, H. Ohgaki, H. Toyokawa,
�@�@�@�@ K. Sumiyoshi and Y.-W. Lui,
�@�@�@�@ in Proceedings of the International
Conference on Nuclear Data for Science and Technology,
�@�@�@�@ Tsukuba, Japan 2001,
�@�@�@�@ Journal of Nuclear Science and Technology,
Supplement 2 (2002) 542-545.
12.�@�@ Patterns of r-process in collapse-driven
supernovae: delayed or prompt mechanism?
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ in Proceedings of the 7th International
Symposium on Nuclei in the Cosmos (NIC7),
�@�@�@�@ Fuji-Yoshida, Japan, 2002,
�@�@�@�@ Nuclear Physics A718 (2003)
303c-306c.
13.�@�@ The r-process in neutrino-driven winds from a
typical neutron star with M=1.4Msolar,
�@�@�@�@ M. Terasawa, K. Sumiyoshi and T. Kajino,
�@�@�@�@ in Proceedings of the 7th International
Symposium on Nuclei in the Cosmos (NIC7),
�@�@�@�@ Fuji-Yoshida, Japan, 2002,
�@�@�@�@ Nuclear Physics A718 (2003)
641c-643c.
14.�@�@ Protoneutron star cooling with a new equation
of state,
�@�@�@�@ H. Suzuki, H. Kogure, F. Tomioka, K.
Sumiyoshi, S. Yamada and H. Shen,
�@�@�@�@ in Proceedings of the 7th International
Symposium on Nuclei in the Cosmos (NIC7),
�@�@�@�@ Fuji-Yoshida, Japan, 2002,
�@�@�@�@ Nuclear Physics A718 (2003)
703c-705c.
15.�@�@ Relativistic equation of state for supernova
and neutron star,
�@�@�@�@ H. Shen, H. Toki, K. Oyamatsu and K.
Sumiyoshi,
�@�@�@�@ in Proceedings of the XVI International
Conference on Particles and Nuclei (PANIC02),
�@�@�@�@ Osaka, Japan, 2002,
�@�@�@�@ Nuclear Physics A721 (2003)
1048c-1051c.
16.�@�@ R-process in prompt and delayed supernova
explosions,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ in Proceedings of the XVI International
Conference on Particles and Nuclei (PANIC02),
�@�@�@�@ Osaka, Japan, 2002,
�@�@�@�@ Nuclear Physics A721 (2003)
1036c-1039c.
17.�@�@ Finite Temperature effects on supernova explosion
energy and hyperon composition,
�@�@�@�@ C. Ishizuka, A. Ohnishi, K. Sumiyoshi and
S. Yamada,
�@�@�@�@ in Proceedings of the 18th Nishinomiya
Yukawa Memorial Symposium
�@�@�@�@ and the YITP Workshop on Nuclear Matter
under Extreme Conditions,
�@�@�@�@ Nishinomiya, Japan, 2003,
�@�@�@�@ Progress of Theoretical Physics Supplement 156
(2004) 152-153
18.�@�@ An approach toward the successful supernova
explosion by physics of unstable nuclei,
�@�@�@�@ K. Sumiyoshi, S. Yamada, H. Suzuki, H. Shen
and H. Toki,
�@�@�@�@ in Proceedings of the 8th International Symposium
on Nuclei in the Cosmos (NIC8),
�@�@�@�@ Vancouver, Canada, 2004,
�@�@�@�@ Nuclear Physics A758 (2005) 63c-66c.
19.�@�@ Gravitational collapse and neutrino emission
of population III massive stars,
�@�@�@�@ K. Nakazato, K. Sumiyoshi and S. Yamada,
�@�@�@�@ in Proceedings of the 3rd 21COE Symposium:
Astrophysics As Interdisciplinary Science,
�@�@�@�@ Tokyo, Japan, 2005,
�@�@�@�@ Journal of Physics: Conference Series 31
(2006) 205-206
20.�@�@ Shock wave propagation in prompt supernova
explosion and the MSW effect of neutrino
�@�@�@�@ S. Kawagoe, T. Kajino, H. Suzuki, K.
Sumiyoshi and S. Yamada,
�@�@�@�@ in Proceedings of Ninth International
Conference on Topics in Astroparticle and Underground Physics
�@�@�@�@ (TAUP 2005), Zaragoza, Spain, 2005,
�@�@�@�@ Journal of Physics: Conference Series 39
(2006) 294-296
21.�@�@ Neutrino-nucleus interactions and supernova modeling,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ in Proceedings of 4th International workshop on neutrino-nucleus
interactions in the few-GeV region
�@�@�@�@ (NuInt05), Okayama University, Okayama, Japan, 2005,
�@�@�@�@ Nuclear Physics B159 (2006) 27c-32c.
22.�@�@ Influence of equation of state in supernova simulations:
�@�@�@�@ neutrinos from proto-neutron star and black hole formation,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ in Proceedings of Yukawa International Seminar (YKIS06) 2006
�@�@�@�@ New Frontiers in QCD - Exotic Hadrons and Hadronic Matter -
�@�@�@�@ YITP, Kyoto, Japan, 2006. 12
�@�@�@�@ Progress of Theoretical Physics Supplement 168 (2007)
610-613.
23.�@�@ Impact of EOS on core-collapse supernovae: neutrino signature of
black hole formation,
�@�@�@�@ K. Sumiyoshi, S. Yamada and H. Suzuki,
�@�@�@�@ in Proceedings of International Nuclear Physics Conference
(INPC2007)
�@�@�@�@ Tokyo, Japan, 2007,
�@�@�@�@ Nuclear Physics A805 (2008) 576-578.
24.�@�@ Systematic study for the shell effect in the fission fragment mass
distribution
�@�@�@�@ ruptured from neutron rich nuclei
�@�@�@�@ M. Ohta, S. Tatsuda, K. Yamamoto, T. Asano, T. Wada, K.
Hashizume, K. Sumiyoshi,
�@�@�@�@ K. Otsuki, T. Kajino, H. Koura, S. Chiba and T. Tachibana,
�@�@�@�@ in Proceedings of International Nuclear Physics Conference
(INPC2007),
�@�@�@�@ Tokyo, Japan, 2007,
�@�@�@�@ Nuclear Physics A805 (2008) 558-560.
25.�@�@ Stellar collapse with hadron-quark phase
transition of hot and dense matter,
�@�@�@�@ K. Nakazato, K. Sumiyoshi and S. Yamada,
�@�@�@�@ in Proceedings of "New Frontiers in
QCD 2008, Fundamental Problems in Hod and/or Dense Matter",
�@�@�@�@ Yukawa International Program for Quark-Hadron
Sciences,
�@�@�@�@ YITP, Kyoto, Japan, 2008.2
�@�@�@�@ Progress of Theoretical Physics Supplement 174
(2008) 76-79.
26.�@�@ Emergence of hyperons in failed supernovae
with short neutrino bursts,
�@�@�@�@ K. Sumiyoshi, K. Nakazato, C. Ishizuka, A.
Ohnishi, S. Yamada and H. Suzuki,
�@�@�@�@ The 10th International Conference on
Hypernuclear and Strange Particle Physics (Hyp X),
�@�@�@�@ "RICOTTI" in Tokai, Ibaraki,
Japan, 2009.9
�@�@�@�@ Nuclear Physics A835 (2010) 295-302.
27.�@�@ EOS of hyperonic matter for core-collapse
supernovae,
�@�@�@�@ A. Ohnishi, K. Tsubakihara, K. Sumiyoshi,
C. Ishizuka, S. Yamada and H. Suzuki,
�@�@�@�@ The 10th International Conference on
Hypernuclear and Strange Particle Physics (Hyp X),
�@�@�@�@ "RICOTTI" in Tokai, Ibaraki,
Japan, 2009.9
�@�@�@�@ Nuclear Physics A835 (2010) 374-377.
�‘�Û‰ï‹cƒvƒ�ƒV�[ƒfƒBƒ“ƒOƒX“™
1.�@�@�@ Baryon evaporation and QCD phase transition
in the early universe,
�@�@�@�@ K. Sumiyoshi, K. Kusaka and T. Kajino,
�@�@�@�@ in Proceedings of the first International
Conference on Radioactive Nuclear Beams,
�@�@�@�@ California, USA, 1989, edited by W. D.
Myers, J. M. Nitschke and E. B. Norman,
�@�@�@�@ (World Scientific, Singapore, 1990)
256-265.
2.�@�@�@ Could cosmic QCD phase transition produce
strange quark matter which survives until the present time?
�@�@�@�@ T. Kajino and K. Sumiyoshi,
�@�@�@�@ in Proceedings of the IUPAP Conference on
Primordial Nucleosynthesis and Evolution of Early Universe,
�@�@�@�@ Tokyo, Japan, 1990, edited by K. Sato and
J. Audouze,
�@�@�@�@ (Kluwer Academic Publishers, Dordrecht, The
Netherlands, 1991) 95-100.
3.�@�@�@ Supernova and neutron stars with equations
of state in relativistic many body theory
�@�@�@�@ constrained by unstable nuclei,
�@�@�@�@ K. Sumiyoshi, D. Hirata, H. Toki and R.
Brockmann,
�@�@�@�@ in Proceedings of the International
Workshop on Unstable Nuclei in Astrophysics,
�@�@�@�@ Tokyo, Japan, 1991, edited by S. Kubono and
T. Kajino,
�@�@�@�@ (World Scientific, Singapore, 1992)
319-326.
4.�@�@�@ A QCD study of primordial strange quark
matter in the chromoelectric flux tube model,
�@�@�@�@ K. Sumiyoshi and T. Kajino,
�@�@�@�@ in Proceedings of the International
Workshop on Unstable Nuclei in Astrophysics,
�@�@�@�@ Tokyo, Japan, 1991, edited by S. Kubono and
T. Kajino,
�@�@�@�@ (World Scientific, Singapore, 1992)
141-144.
5.�@�@�@ Relativistic many body theory for unstable
nuclei,
�@�@�@�@ H. Toki, D. Hirata, I. Tanihata, K.
Sumiyoshi and Y. Sugahara,
�@�@�@�@ in Proceedings of China-Japan Joint Nuclear
Physics Symposium on Recent Topics on Nuclear Physics,
�@�@�@�@ Tokyo, Japan, 1992, edited by H. Ohnuma,
�@�@�@�@ (Tokyo Institute of Technology, Tokyo,
1993) 206-211.
6.�@�@�@ Relativistic equation of state for supernova
constrained by properties of nuclei far from stability,
�@�@�@�@ K. Sumiyoshi, H. Toki and H. Suzuki,
�@�@�@�@ in Proceedings of China-Japan Joint Nuclear
Physics Symposium on Recent Topics on Nuclear Physics,
�@�@�@�@ Tokyo, Japan, 1992, edited by H. Ohnuma,
�@�@�@�@ (Tokyo Institute of Technology, Tokyo,
1993) 356-358.
7.�@�@�@ Relativistic mean field theory for unstable
nuclei,
�@�@�@�@ D. Hirata, H. Toki, I. Tanihata, K.
Sumiyoshi, Y. Sugahara and R. Brockmann,
�@�@�@�@ in Proceedings of the third International
Conference on Radioactive Nuclear Beams,
�@�@�@�@ Michigan, USA, 1993, edited by D. J. Morrissey,
�@�@�@�@ (Editions Frontieres, Gif-sur-Yvette Cedex,
France, 1993) 247-251.
8.�@�@�@ Relativistic equation of state constrained
by unstable nuclei for the supernova explosion
�@�@�@�@ and the birth of neutron stars,
�@�@�@�@ K. Sumiyoshi, H. Suzuki and H. Toki,
�@�@�@�@ in Proceedings of the third International
Conference on Radioactive Nuclear Beams,
�@�@�@�@ Michigan, USA, 1993, edited by D. J.
Morrissey,
�@�@�@�@ (Editions Frontieres, Gif-sur-Yvette Cedex,
France, 1993) 501-505.
9.�@�@�@ Neutrino emission from protoneutron stars,
�@�@�@�@ H. Suzuki and K. Sumiyoshi,
�@�@�@�@ in Proceedings of the Oji International
Seminar on Elementary Processes in Dense Plasmas,
�@�@�@�@ Tomakomai, Japan, 1994, edited by S.
Ichimaru and S. Ogata,
�@�@�@�@ (Addison-Wesley, Massachusetts, 1995)
85-92.
10.�@�@ Study of the ground state properties of
even-even nuclei up to the drip lines
�@�@�@�@ in terms of the relativistic mean field
theory,
�@�@�@�@ D. Hirata, K. Sumiyoshi, I. Tanihata, Y.
Sugahara, B.V. Carlson and H. Toki,
�@�@�@�@ in Proceedings of the International
Symposium on Heavy Ion Physics,
�@�@�@�@ in Lanzhou, China, 1995, (1995) 458-467.
11.�@�@ Relativistic many body theory for unstable
nuclei and neutron stars,
�@�@�@�@ H. Toki, K. Sumiyoshi, D. Hirata, Y.
Sugahara and I. Tanihata,
�@�@�@�@ in Proceedings of International Symposium
on Origin of Matter and Evolution of Galaxies in the Universe,
�@�@�@�@ Atami, Japan, 1996, edited by T. Kajino, Y.
Yoshii and S. Kubono,
�@�@�@�@ (World Scientific, Singapore, 1997)
367-374.
12.�@�@ Ground-state properties of unstable nuclei in
the relativistic mean field framework,
�@�@�@�@ K. Sumiyoshi, D. Hirata, B. V. Carlson, I.
Tanihata, Y. Sugahara, S. Sugimoto and H. Toki,
�@�@�@�@ in Proceedings of the XVII RCNP
International Symposium on Innovative Computational Methods
�@�@�@�@ in Nuclear Many-Body Problems, Osaka,
Japan, 1997,
�@�@�@�@ edited by H. Horiuchi, M. Kamimura, H.
Toki, Y. Fujiwara, M. Matsuo and Y. Sakuragi,
�@�@�@�@ (World Scientific, Singapore, 1998)
352-360.
13.�@�@ Explosion of a neutron star just below the
minimum mass,
�@�@�@�@ K. Sumiyoshi, S. Yamada, H. Suzuki and W.
Hillebrandt,
�@�@�@�@ in Proceedings of the International
Symposium on Neutron Stars and Pulsars,
�@�@�@�@ Rikkyo University, Tokyo, 1997, edited by
N. Shibazaki, N. Kawai, S. Shibata and T. Kifune,
�@�@�@�@ (Universal Academy Press, Tokyo, 1998)
125-128.
14.�@�@ Relativistic equation of state
of nuclear matter for supernova and neutron star,
�@�@�@�@ H. Shen, H. Toki, K. Oyamatsu and K.
Sumiyoshi,
�@�@�@�@ in Proceedings of the International
Symposium on Neutron Stars and Pulsars,
�@�@�@�@ Rikkyo University, Tokyo, 1997, edited by
N. Shibazaki, N. Kawai, S. Shibata and T. Kifune,
�@�@�@�@ (Universal Academy Press, Tokyo, 1998)
157-160.
15.�@�@ Explosion of a neutron star just below the
minimum mass: a possible site for r-process nucleosynthesis,
�@�@�@�@ K. Sumiyoshi, S. Yamada, H. Suzuki and W.
Hillebrandt,
�@�@�@�@ in Proceedings of the International Symposium
on Origin of Matter and Evolution of Galaxies '97,
�@�@�@�@ Atami, Japan, 1997, edited by S. Kubono and
T. Kajino,
�@�@�@�@ (World Scientific, Singapore, 1998)
313-317.
16.�@�@ Explosion of a neutron star
below the minimum mass with implicit hydrodynamics,
�@�@�@�@ K. Sumiyoshi, S. Yamada, H. Suzuki and W.
Hillebrandt,
�@�@�@�@ in Proceedings of Numerical Astrophysics
1998, Tokyo, 1998,
�@�@�@�@ edited by S. M. Miyama, K. Tomisaka and T.
Hanawa,
�@�@�@�@ (Kluwer Academic Publishers, Dordrecht, The
Netherlands, 1998), 285-286.
17.�@�@ Unstable nuclei and EOS for supernova and
r-process,
�@�@�@�@ K. Sumiyoshi, H. Shen, K. Oyamatsu, Y.
Sugahara, M. Terasawa, K. Otsuki, H. Suzuki, S. Yamada,
�@�@�@�@ T. Kajino, H. Toki and I. Tanihata,
�@�@�@�@ in Proceedings of the RCNP-TMU Symposium on
Spins in Nuclear and Hadronic Reactions,
�@�@�@�@ Tokyo Metropolitan University, Tokyo, 1999,
edited by H. Yabu, T. Suzuki and H. Toki,
�@�@�@�@ (World Scientific, Singapore 2000) 189-194.
18.�@�@ Unstable nuclei and an EOS table for
supernovae and the r-process in a relativistic many-body approach,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ in Proceedings of International Symposium
on Origin of Matter and Evolution of Galaxies 2000,
�@�@�@�@ CNS, Tokyo, Japan, 2000,
�@�@�@�@ (World Scientific, Singapore 2003) 297-304.
19.�@�@ Collapse-driven supernovae and the r-process
with new data of unstable nuclei,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ in Proceedings of Tours 2000 Symposium on
Nuclear Physics,
�@�@�@�@ Tours, France, 2000,
�@�@�@�@ American Institute of Physics Conference
Proceedings 561(2001) 48-52.
20.�@�@ Nuclear mass modification in supernova matter,
�@�@�@�@ C. Ishizuka, A. Ohnishi and K. Sumiyoshi,
�@�@�@�@ in Proceedings of International Symposium on Clustering Aspects
of Quantum Many-body Systems,
�@�@�@�@ Yukawa Institute for Theoretical Physics (YITP), Kyoto, 2001,
�@�@�@�@ (World Scientific, Singapore, 2002) 201-204.
21.�@�@ R-process nucleosynthesis in type-II supernova model with neutron
star mass ~ 1.4 Msolar mass,
�@�@�@�@ M. Terasawa, K. Sumiyoshi, T. Kajino and G. J. Mathews,
�@�@�@�@ in Proceedings of International Symposium on Clustering Aspects
of Quantum Many-body Systems,
�@�@�@�@ Yukawa Institute for Theoretical Physics (YITP), Kyoto, 2001,
�@�@�@�@ (World Scientific, Singapore, 2002) in press.
22.�@�@ Nuclear data for astrophysical nucleosynthesis: a Japanese + LANL
activity,
�@�@�@�@ S. Chiba, T. Kawano, H. Koura, T. Nakagawa, T. Tachibana, T.
Kajino, S. Oryu, T. Hayakawa, A. Seki,
�@�@�@�@ T. Maruyama, T. Tanigawa, Y. Watanabe, T. Ohsaki, T. Murata and
K. Sumiyoshi,
�@�@�@�@ in Proceedings of International Conference on Nuclear Data for
Science and Technology (ND2004)
�@�@�@�@ Santa Fe, New Mexico, 2004,
�@�@�@�@ American Institute of Physics Conference Proceedings 769
(2005) 1339-1344.
23.�@�@ Supernova explosion energy with relativistic EOS including
hyperon,
�@�@�@�@ C. Ishizuka, A. Ohnishi, K. Sumiyoshi and S. Yamada,
�@�@�@�@ in Proceedings of International Symposium on the Origin of
Matter and Evolution of Galaxies 2003,
�@�@�@�@ Wako, Saitama, Japan, 2003,
�@�@�@�@ (World Scientific, Singapore, 2005) 489-492.
24.�@�@ Properties of dense matter in neutron stars and supernovae,
�@�@�@�@ H. Shen, H. Toki, K. Oyamatsu and K. Sumiyoshi,
�@�@�@�@ in Proceedings of XXIX International workshop on condensed
matter theories,
�@�@�@�@ Kizu, Kyoto, Japan, 2005,
�@�@�@�@ Condensed Matter Theories
�@�@�@�@ (Nova Science Publishers) in press.
25.�@�@ MSW effect in supernova-shock propagation,
�@�@�@�@ S. Kawagoe, T. Kajino, K. Yoshihara, H. Suzuki, K. Sumiyoshi and
S. Yamada,
�@�@�@�@ in Proceedings of International Symposium on Origin of Matter
and Evolution of Galaxies (OMEG05),
�@�@�@�@ New Horizon of Nuclear Astrophysics and Cosmology,
�@�@�@�@ University of Tokyo, Tokyo, Japan, 2005,
�@�@�@�@ American Institute of Physics Conference Proceedings 847
(2006) 415-417.
26.�@�@ Fate of core-collapse supernovae: formation of neutron star and
black hole,
�@�@�@�@ K. Sumiyoshi, H. Suzuki and S. Yamada,
�@�@�@�@ in Proceedings of International Symposium on Origin of Matter
and Evolution of Galaxies (OMEG05),
�@�@�@�@ New Horizon of Nuclear Astrophysics and Cosmology,
�@�@�@�@ University of Tokyo, Tokyo, Japan, 2005,
�@�@�@�@ American Institute of Physics Conference Proceedings 847
(2006) 473-475.
27.�@�@ Gravitational wave from realistic stellar collapse: odd parity
perturbation,
�@�@�@�@ K. Kiuchi, K. Nakazato, K. Kotake, K. Sumiyoshi and S. Yamada,
�@�@�@�@ in Proceedings of "Relativistic Astrophysics and Cosmology
- Einstein's Legacy "
�@�@�@�@ ESO, Garching, Germany, 2005,
�@�@�@�@ ESO Astrophysics Symposia (Springer-Verlag series), (2007)
79-81.
28.�@�@ Gravitational collapse and neutrino emission of population III
massive stars,
�@�@�@�@ K. Nakazato, K. Sumiyoshi and S. Yamada,
�@�@�@�@ in Proceedings of "Relativistic Astrophysics and Cosmology
- Einstein's Legacy "
�@�@�@�@ ESO, Garching, Germany, 2005,
�@�@�@�@ ESO Astrophysics Symposia (Springer-Verlag series), (2007) 394-398.
29.�@�@ Clusters and condensates in the nuclear matter equation of state,
�@�@�@�@ G. Röpke, A. Grigo, K. Sumiyoshi and H. Shen,
�@�@�@�@ in Proceedings of the NATO Advanced Research Workshop on
Superdense QCD Matter and Compact Stars,
�@�@�@�@ Yerevan, Armenia, 2003,
�@�@�@�@ NATO Science Series, II. Mathematics, Physics and Chemistry -
Vol. 197
�@�@�@�@ (Springer, Dordrecht, 2006), 75-91
30.�@�@ Core-collapse supernovae, neutron stars and black holes in the
light of physics of unstable nuclei,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ in Proceedings of the 6th China Japan Joint Nuclear Physics
Symposium,
�@�@�@�@ Shanghai, China, 2006,
�@�@�@�@ American Institute of Physics Conference Proceedings 865
(2006) 215-220.
31.�@�@ Systematic study for the mass distribution of fission fragments in
the neutron rich region,
�@�@�@�@ M. Ohta, S. Tatsuda, T. Hashizume, K. Yamamoto, T. Wada, K.
Sumiyoshi, K. Otsuki, T. Kajino,
�@�@�@�@ H. Koura, S. Chiba and T. Tachibana,
�@�@�@�@ in Proceedings of International Conference on Nuclear Data for
Science and Technology (ND2007),
�@�@�@�@ Nice, France, 2007, (EDP Sciences) (2007) 096 (4 pages).
32.�@�@ Fission fragment mass distribution for nuclei in the r-process
region,
�@�@�@�@ S. Tatsuda, K. Hashizume, T. Wada, M. Ohta, K. Sumiyoshi, K.
Otsuki, T. Kajino, H. Koura, S. Chiba
�@�@�@�@ and Y. Aritomo,
�@�@�@�@ in Proceedings of the Tours Symposium on Nuclear Physics VI,
�@�@�@�@ Tours, France, 2006
�@�@�@�@ American Institute of Physics Conference Proceedings 891 (2007)
423-426.
33.�@�@ Equation of state of dense matter for core-collapse supernovae,
compact objects and neutrino bursts,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ in Proceedings of International Symposium on Origin of Matter
and Evolution of Galaxies (OMEG07),
�@�@�@�@ Hokkaido University, Sapporo, Japan, 2007,
�@�@�@�@ American Institute of Physics Conference Proceedings, 1016
(2008) 269-276.
34.�@�@ The r-process element abundance with a realistic fission fragment
mass distribution,
�@�@�@�@ S. Chiba, H. Koura, T. Maruyama, M. Ohta, S. Tatsuda, T. Wada,
T. Tachibana, K. Sumiyoshi,
�@�@�@�@ K. Otsuki and T. Kajino,
�@�@�@�@ in Proceedings of International Symposium on Origin of Matter
and Evolution of Galaxies (OMEG07),
�@�@�@�@ Hokkaido University, Sapporo, Japan, 2007,
�@�@�@�@ American Institute of Physics Conference Proceedings, 1016
(2008) 162-167.
35.�@�@ Equation of state for hadron-quark mixed phase and stellar
collapse,
�@�@�@�@ K. Nakazato, K. Sumiyoshi and S. Yamada,
�@�@�@�@ in Proceedings of International Symposium on Origin of Matter
and Evolution of Galaxies (OMEG07),
�@�@�@�@ Hokkaido University, Sapporo, Japan, 2007,
�@�@�@�@ American Institute of Physics Conference Proceedings, 1016
(2008) 282-287.
36.�@�@ Variational calculations for the nuclear equation of state toward
supernova simulations,
�@�@�@�@ H. Kanzawa, K. Oyamatsu, K. Sumiyoshi and M. Takano,
�@�@�@�@ in Proceedings of International Symposium on Origin of Matter
and Evolution of Galaxies (OMEG07),
�@�@�@�@ Hokkaido University, Sapporo, Japan, 2007,
�@�@�@�@ American Institute of Physics Conference Proceedings, 1016
(2008) 261-266.
37.�@�@ Relativistic EOS of supernova matter with hyperons,
�@�@�@�@ A. Ohnishi, C. Ishizuka, K. Tsubakihara, H. Maekawa, H.
Matsumiya, K. Sumiyoshi and S. Yamada,
�@�@�@�@ in Proceedings of International Symposium on Origin of Matter
and Evolution of Galaxies (OMEG07),
�@�@�@�@ Hokkaido University, Sapporo, Japan, 2007,
�@�@�@�@ American Institute of Physics Conference Proceedings, 1016
(2008) 255-260.
38.�@�@ Fission modes of neutron-rich nuclei in the r-process
nucleosynthesis,
�@�@�@�@ S. Tatsuda, K. Yamamoto, T. Asano, M. Ohta, T. Wada, S. Chiba,
H. Koura, T. Maruyama, T. Tachibana,
�@�@�@�@ T. Kajino, K. Sumiyoshi and K. Otsuki
�@�@�@�@ in Proceedings of International Symposium on Origin of Matter and
Evolution of Galaxies (OMEG07),
�@�@�@�@ Hokkaido University, Sapporo, Japan, 2007,
�@�@�@�@ American Institute of Physics Conference Proceedings, 1016
(2008) 255-260.
39.�@�@ Equation of state of nuclear matter and the nuclear three-body
force,
�@�@�@�@ H. Kanzawa, K. Oyamatsu, K. Sumiyoshi and M. Takano,
�@�@�@�@ in Proceedings of International Symposium on New Facet of Three
Nucleon Force
�@�@�@�@ 50 years of Fujita-Miyazawa Three Nucleon Force
�@�@�@�@ University of Tokyo, Tokyo, Japan, 2007
�@�@�@�@ American Institute of Physics Conference Proceedings, 1011
(2008) 287-292.
40.�@�@ Variational calculation for the nuclear equation of state toward
supernova explosions,
�@�@�@�@ M. Takano, H. Kanzawa, K. Oyamatsu and K. Sumiyoshi,
�@�@�@�@ In Proceedings of Chiral Symmetry in Hadron
and Nuclear Physics (CHIRAL07),
�@�@�@�@ Osaka University, Japan, 2007
�@�@�@�@ Modern Physics Letters A, (World
Scientific) 23 (2008) 2455-2458.
41.�@�@ Equation of state of dense matter for core-collapse supernovae and
neutrino bursts,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ In Proceedings of Chiral Symmetry in Hadron
and Nuclear Physics (CHIRAL07),
�@�@�@�@ Osaka University, Japan, 2007
�@�@�@�@ Modern Physics Letters A, (World
Scientific) 23 (2008) 2451-2454.
42�@�@�@ Constraints on oscillation parameters
through the MSW effect of supernova neutrinos,
�@�@�@�@ S. Kawagoe, T. Kajino, H. Suzuki, K. Sumiyoshi and S. Yamada,
�@�@�@�@ In Proceedings of Tenth International
Conference on Topics in Astroparticle and
�@�@�@�@ Underground Physics (TAUP2007), Sendai,
Japan, 2007,
�@�@�@�@ Journal of Physics, Conference Series, 120
(2008) 052020.
43.�@�@ Short neutrino burst from failed supernovae as
a probe of dense matter with hyperon mixture,
�@�@�@�@ K. Sumiyoshi, C. Ishizuka, A. Ohnishi, S.
Yamada and H. Suzuki,
�@�@�@�@ In Proceedings of 10th Symposium on Nuclei
in the Cosmos, Michigan, USA, 2008,
�@�@�@�@ Proceedings of Science (PoS, SISSA,
Trieste), PoS(NIC X)122.
44.�@�@ Nuclear many-body approach for supernova EOS:
�@�@�@�@ Thomas-Fermi calculations of non-uniform
nuclear matter
�@�@�@�@ H. Kanzawa, K. Oyamatsu, K. Sumiyoshi and
M. Takano,
�@�@�@�@ In Proceedings of 10th Symposium on Nuclei
in the Cosmos, Michigan, USA, 2008,
�@�@�@�@ Proceedings of Science (PoS, SISSA,
Trieste), PoS(NIC X)108.
45.�@�@ Neutrino emission from stellar collapse including hadron-quark
mixed phase,
�@�@�@�@ K. Nakazato, K. Sumiyoshi and S. Yamada,
�@�@�@�@ In Proceedings of 10th Symposium on Nuclei
in the Cosmos, Michigan, USA, 2008,
�@�@�@�@ Proceedings of Science (PoS, SISSA,
Trieste), PoS(NIC X)116.
46.�@�@ Neutrino astronomy as a probe into physics of hot and dense
matter,
�@�@�@�@ K. Nakazato, K. Sumiyoshi, H. Suzuki and S. Yamada,
�@�@�@�@ In Proceedings of Tours Symposium on Nuclear Physics and
Astrophysics VII,
�@�@�@�@ Kobe, Japan, 2009,
�@�@�@�@ American Institute of Physics Conference Proceedings, 1238 (2010) 145-150.
47.�@�@ Neutrino astronomy as a probe into physics of hot and dense
matter,
�@�@�@�@ K. Nakazato, K. Sumiyoshi, H. Suzuki and S. Yamada,
�@�@�@�@ In Proceedings of 10th International Symposium on Origin of
Matter and
�@�@�@�@ Evolution of the Galaxies (OMEG10), Osaka University, Japan,
2010,
�@�@�@�@ American Institute of Physics Conference Proceedings, 1269
(2010) 354-356.
48.�@�@ Neutrino bursts from failed supernovae as a promising target of
neutrino astronomy,
�@�@�@�@ K. Sumiyoshi, K. Nakazato, H. Suzuki and S. Yamada,
�@�@�@�@ In Proceedings of 11th Symposium on Nuclei
in the Cosmos, Heidelberg, Germany, 2010,
�@�@�@�@ Proceedings of Science (PoS, SISSA, Trieste), PoS(NIC XI) 157.
49.�@�@ A numerical challenge on the core-collapse supernovae: physics of
neutrino and matter at extreme conditions,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ In Proceedings of International Symposium "Nanoscience and
Quantum Physics 2011" (nanoPHYS'11),
�@�@�@�@ Tokyo, Japan, 2011,
�@�@�@�@ Journal of Physics, Conference Series, 302 (2011) 012060
(7 pages).
50.�@�@ QCD critical point in the strong coupling lattice QCD and during
black hole formation
�@�@�@�@ A. Ohnishi, K. Miura, T. Z. Nakano, N. Kawamoto, H. Ueda, M.
Ruggieri and K. Sumiyoshi,
�@�@�@�@ in Proceedings of the HIC for FAIR workshop & 28th Max Born
Symposium
�@�@�@�@ on Three days on Quarkyonic Island, Wroclaw, Poland, May 19-21,
2011,
�@�@�@�@ Acta Physica Polonica B (Proceedings Supplement) 5,
(2012) 815-824.�@
51.�@�@ Progress of the equation of state table for supernova simulations
and its influence,
�@�@�@�@ K. Sumiyoshi
�@�@�@�@ in Proceedings of the International
Symposium on Origin of Matter and Evolution of Galaxies (OMEG11),
�@�@�@�@ RIKEN, Wako, Saitama, Japan, November
14-17, 2011,
�@�@�@�@ American Institute of Physics Conference Proceedings 1484 (2012) 39-44.
52.�@�@ QCD critical point sweep during black hole formation,
�@�@�@�@ A. Ohnishi, H. Ueda, T. Z. Nakano, M. Ruggieri and K. Sumiyoshi,
�@�@�@�@ in Proceedings of the International
Symposium on Origin of Matter and Evolution of Galaxies (OMEG11),
�@�@�@�@ RIKEN, Wako, Saitama, Japan, November
14-17, 2011,
�@�@�@�@ American Institute of Physics Conference Proceedings 1484 (2012) 327-332.
53.�@�@ A new baryonic equation of state at sub-nuclear densities for
core-collapse simulations,
�@�@�@�@ S. Furusawa, S. Yamada, K. Sumiyoshi and H. Suzuki,
�@�@�@�@ in Proceedings of the International
Symposium on Origin of Matter and Evolution of Galaxies (OMEG11),
�@�@�@�@ RIKEN, Wako, Saitama, Japan, November
14-17, 2011,
�@�@�@�@ American Institute of Physics Conference Proceedings 1484 (2012) 369-371.
54.�@�@ The influence of hyperon potential on the black-hole-forming
failed supernovae,
�@�@�@�@ K. Nakazato and K. Sumiyoshi,
�@�@�@�@ in Proceedings of the International
Symposium on Origin of Matter and Evolution of Galaxies (OMEG11),
�@�@�@�@ RIKEN, Wako, Saitama, Japan, November
14-17, 2011,
�@�@�@�@ American Institute of Physics Conference Proceedings 1484 (2012) 375-377.
55.�@�@ Numerical code of the neutrino-transfer in three dimensions for
core-collapse supernovae,
�@�@�@�@ K. Sumiyoshi and S. Yamada,
�@�@�@�@ in Proceedings of the IAU Symposium �gDeath of Massive Stars:
Supernovae and Gamma-Ray Bursts�h,
�@�@�@�@ Nikko, Japan, March 12-16, 2012.
�@�@�@�@ Proceedings IAU Symposium No. 279 (2012) 395-396
�@�@�@�@ (eds. P. Roming, N. Kawai and E. Pian, Cambridge University
Press).
56.�@�@ Stellar core collapse and exotic matter,
�@�@�@�@ K. Nakazato and K. Sumiyoshi,
�@�@�@�@ in Proceedings of the IAU Symposium �gDeath of Massive Stars:
Supernovae and Gamma-Ray Bursts�h,
�@�@�@�@ Nikko, Japan, March 12-16, 2012.
�@�@�@�@ Proceedings IAU Symposium No. 279 (2012) 367-368
�@�@�@�@ (eds. P. Roming, N. Kawai and E. Pian, Cambridge University
Press).
57.�@�@ A new equation of state based on nuclear statistical equilibrium
for core-collapse simulations,
�@�@�@�@ S. Furusawa, S. Yamada, K. Sumiyoshi and H. Suzuki,
�@�@�@�@ in Proceedings of the IAU Symposium �gDeath of Massive Stars:
Supernovae and Gamma-Ray Bursts�h,
�@�@�@�@ Nikko, Japan, March 12-16, 2012.
�@�@�@�@ Proceedings IAU Symposium No. 279 (2012) 333-334.
�@�@�@�@ (eds. P. Roming, N. Kawai and E. Pian, Cambridge University
Press).
58.�@�@ Numerical modeling of core-collapse supernovae and
compact objects,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ in Proceedings of the IAU Symposium
291�hNeutron Stars and Pulsars: Challenges and Opportunities
�@�@�@�@ after 80 years�h,
�@�@�@�@ Beijing, China, August 20-31, 2012.
�@�@�@�@ Proceedings IAU Symposium No.
291 (2012) 67-72.
�@�@�@�@ (ed. Joeri van Leeuwen, Cambridge
University Press)
59.�@�@ Database for Nuclear EOS,
�@�@�@�@ C. Ishizuka, T. Suda, H. Suzuki, A. Ohnishi, K. Sumiyoshi and H.
Toki,
�@�@�@�@ In Proceedings of 12th Symposium on Nuclei in
the Cosmos, Cairns, Australia, 2012,
�@�@�@�@ Proceedings of Science (PoS, SISSA, Trieste), PoS(NIC XII).
Œû“ª”•\�i�‘�Û‰ï‹c�j
1.�@�@�@ Formation and evaporation of strange quark matter,
�@�@�@�@ K. Sumiyoshi and T. Kajino,
�@�@�@�@ Internationl Workshop on High Density Matter,
�@�@�@�@ KEK, Tsukuba, 1990.9
2.�@�@�@ A new survival condition of primordial�@ strange quark matter,
�@�@�@�@ K. Sumiyoshi and T. Kajino,
�@�@�@�@ International Workshop on Strange Quark Matter in Physics and
Astrophysics,
�@�@�@�@ University of Aarhus, Denmark, 1991.5
3.�@�@�@ Relativistic mean field theory for unstable nuclei, neutron stars
and supernovae,
�@�@�@�@ K. Sumiyoshi, D. Hirata, I. Tanihata, Y. Sugahara and H. Toki,
�@�@�@�@ International Symposium on Frontiers of Nuclear Structure
Physics,
�@�@�@�@ RIKEN, Wako, 1994.3
4.�@�@�@ Explosion of a neutron star just below the minimum mass: a
possible site for r-process nucleosynthesis,
�@�@�@�@ K. Sumiyoshi, S. Yamada, H. Suzuki and W. Hillebrandt,
�@�@�@�@ International Symposium on Origin of Matter and Evolution of
Galaxies '97,
�@�@�@�@ Atami, 1997.11
5.�@�@�@ Ground state properties of unstable nuclei in the relativistic
mean field theory,
�@�@�@�@ K. Sumiyoshi, D. Hirata, B. V. Carlson, I. Tanihata, Y.
Sugahara, S. Sugimoto and H. Toki
�@�@�@�@ The XVII RCNP International Symposium on Innovative
Computational Methods
�@�@�@�@ in Nuclear Many-Body Problems,
�@�@�@�@ RCNP, Osaka, 1997.11
6.�@�@�@ The fate of a neutron star just below the minimum mass: does it
explode?
�@�@�@�@ K. Sumiyoshi, S. Yamada, H. Suzuki and W. Hillebrandt,
�@�@�@�@ International Symposium on Neutron Stars and Pulsars,
�@�@�@�@ Rikkyo University, Tokyo, 1997.11
7.�@�@�@ Relativistic equation of state for supernova and rapid process,
�@�@�@�@ K. Sumiyoshi, H. Shen, K. Oyamatsu and H. Toki
�@�@�@�@ International Workshop on Nuclear Reactions in Stars and in the
Laboratory
�@�@�@�@ European Centre for Theoretical Studies in Nuclear Physics and Related
Areas,
�@�@�@�@ Trento, Italy, 1999.2
8.�@�@�@ Unstable nuclei and EOS table for supernova explosion and
r-process in relativistic many body approach,
�@�@�@�@ K. Sumiyoshi, H. Shen, K. Oyamatsu, Y. Sugahara, M. Terasawa, K.
Otsuki, H. Suzuki, S. Yamada,
�@�@�@�@ T. Kajino, H. Toki and I. Tanihata,
�@�@�@�@ International Symposium on Models and Theories of the Nuclear
Mass,
�@�@�@�@ RIKEN,Wako, 1999.7
9.�@�@�@ Unstable nuclei and EOS for supernova and r-process,
�@�@�@�@ K. Sumiyoshi, H. Shen, K. Oyamatsu, Y. Sugahara, M. Terasawa, K.
Otsuki, H. Suzuki, S. Yamada,
�@�@�@�@ T. Kajino, H. Toki and I. Tanihata,
�@�@�@�@ the RCNP-TMU Symposium on Spins in Nuclear and Hadronic
Reactions,
�@�@�@�@ Tokyo Metropolitan University, Tokyo, 1999.10
10.�@�@ Unstable Nuclei and an EOS Table for Supernovae and the r-Process
in a Relativistic Many-Body Approach,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ International Symposium on Origin of Matter and Evolution of
Galaxies 2000,
�@�@�@�@ CNS, Tokyo, Japan, 2000.1
11.�@�@ Collapse-driven supernovae and the r-process with new data of
unstable nuclei,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ Tours 2000 Symposium on Nuclear Physics IV
�@�@�@�@ Tours, France, 2000.9
12.�@�@ Relativistic EOS table for supernova and r-process,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ the Institute for Nuclear Theory program INT-01-2, "Neutron
Stars"
�@�@�@�@ Seattle, USA, 2001. 8
13.�@�@ R-process nucleosynthesis in supernova explosions: from unstable
nuclei to observation of stars,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ Yukawa International Seminar 2001 (YKIS01),
"Physics of Unstable Nuclei"
�@�@�@�@ Kyoto, Japan, 2001. 11. 12-14
�@�@�@�@ (Invited Talk)
14.�@�@ Patterns of r-process in collapse-driven
supernovae: delayed or prompt mechanism?
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ The 7th International Symposium on Nuclei
in the Cosmos (NIC7),
�@�@�@�@ Fuji-Yoshida, Japan, 2002.7
15.�@�@ Pattern of r-process nucleosynthesis and
mechanism of supernova explosion,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ Astrophysics Summer Institute 2002 on
"The Origin of the Elements",
�@�@�@�@ Sophia University, Tokyo, Japan, 2002.7
16.�@�@ R-process in prompt & delayed supernova
explosions,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ XVI International Conference on Particles
and Nuclei (PANIC02),
�@�@�@�@ Osaka, Japan, 2002.10
17.�@�@ An approach toward the successful supernova
explosion by physics of unstable nuclei,
�@�@�@�@ K. Sumiyoshi, S. Yamada, H. Suzuki, H. Shen
and H. Toki,
�@�@�@�@ The 8th International Symposium on Nuclei
in the Cosmos (NIC8),
�@�@�@�@ Vancouver, Canada, 2004.7, (poster short
oral presentation)
18.�@�@ Study of core-collapse supernovae:
post-bounce evolution and EOS effects,
�@�@�@�@ K. Sumiyoshi, S. Yamada, H. Suzuki, H. Shen
and H. Toki,
�@�@�@�@ Institute for Nuclear Theory Program INT-04-2,
Supernovae and Gamma Ray Bursts,
�@�@�@�@ Seattle, USA, 2004.7
19.�@�@ Study of collapse-driven supernovae by
neutrino-transport hydrodynamics,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ East Asia Numerical Astrophysics Meeting,
�@�@�@�@ National Astronomical Observatory, Tokyo,
Japan, 2004.12
20.�@�@ Core-collapse supernovae, r-process
nucleosynthesis, and the physics of unstable nuclei
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ Second Joint Meeting of the Nuclear Physics
Divisions of the
�@�@�@�@ Americal Physical Society and The Physical
Society of Japan
�@�@�@�@ Ritz-Carlton, Kapalua, Maui, Hawaii, USA,
2005. 9. 18-22
�@�@�@�@ (Invited Talk)
21.�@�@ Neutrino-nucleus interactions and supernova
modeling
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ The 4th International workshop on
neutrino-nucleus interactions in the few-GeV region (NuInt05)
�@�@�@�@ Okayama University, Okayama, 2005. 9. 26-29
(9.26)
�@�@�@�@ (Invited Talk)
22.�@�@ Fate of core-collapse supernovae: formation
of neutron star and black hole,
�@�@�@�@ K. Sumiyoshi, H. Suzuki and S. Yamada,
�@�@�@�@ International Symposium on Origin of Matter
and Evolution of Galaxies (OMEG05)
�@�@�@�@ New Horizon of Nuclear Astrophysics and
Cosmology,
�@�@�@�@ University of Tokyo, Tokyo, Japan, 2005.
11, (poster short oral presentation)
23.�@�@ Core-collapse supernovae, neutron stars and
black holes in the light of physics of unstable nuclei,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ The 6th China-Japan Joint Nuclear Physics
Symposium,
�@�@�@�@ Shanghai, China, 2006. 5. 16-19 (5.16)
�@�@�@�@ (Invited Talk)
24.�@�@ Influence of nuclear equation of state in
core-collapse supernovae,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ In Heaven and on Earth 2006, The Nuclear
Equation of State in Astrophysics,
�@�@�@�@ McGill University, Montreal, Canada, 2006.
7. 5-7 (7.7)
�@�@�@�@ (Invited Talk)
25.�@�@ Influence of equation of state in supernova
simulations:
�@�@�@�@ neutrinos from proto-neutron star and black
hole formation,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ Yukawa International Seminar (YKIS06) 2006,
�@�@�@�@ New Frontiers in QCD - Exotic Hadrons and
Hadronic Matter -
�@�@�@�@ YITP, Kyoto, Japan, 2006. 12. 4-8 (12.5)
�@�@�@�@ (Invited talk)
26.�@�@ Impact of EOS on core-collapse supernovae:
neutrino signature of black hole formation,
�@�@�@�@ K. Sumiyoshi, S. Yamada and H. Suzuki
�@�@�@�@ International Nuclear Physics Conference
(INPC2007)
�@�@�@�@ Tokyo, Japan, 2007. 6. 3-8 (6.6)
27.�@�@ Core-collapse supernovae and nuclear physics,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ The 3rd Japanese-German EFES(JSPS)-DFG/GSI
workshop on Nuclear Structure and Astrophysics,
�@�@�@�@ Frauenwoerth im Chiemsee, Germany,
2007.9.29-10.2 (9.30)
�@�@�@�@ (Invited talk)
28.�@�@ Equation of state of dense matter for
core-collapse supernovae and neutrino bursts,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ Chiral Symmetry in Hadron and Nuclear
Physics (CHIRAL07),
�@�@�@�@ Osaka University, Japan, 2007. 11. 13-16
(11. 14)
29.�@�@ Equation of state of dense matter for
core-collapse supernovae, compact object and neutrino bursts,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ The 10th International Symposium on Origin
of Matter and Evolution of Galaxies (OMEG07),
�@�@�@�@ Hokkaido University, Japan, 2007. 12. 4-6
(12.5)
�@�@�@�@ (Invited talk)
30.�@�@ Emergence of hyperons in failed supernovae
with short neutrino bursts,
�@�@�@�@ K. Sumiyoshi, K. Nakazato, C. Ishizuka, A.
Ohnishi, S. Yamada and H. Suzuki,
�@�@�@�@ The 10th International Conference on
Hypernuclear and Strange Particle Physics (Hyp X),
�@�@�@�@ "RICOTTI" in Tokai, Ibaraki,
Japan, 2009.9.14-18 (9.18)
�@�@�@�@ (Invited talk)
31.�@�@ Neutrinos and dense matter in core-collapse
supernovae,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ International Symposium "From Quarks
to Supernovae"
�@�@�@�@ Atagawa Heights (Izu, Shizuoka, Japan),
2010.11.28-30 (11.30).�@
32.�@�@ A numerical challenge on the core-collapse
supernovae:
�@�@�@�@ physics of neutrino and matter at extreme
conditions,
�@�@�@�@ K. Sumiyoshi
�@�@�@�@ International Symposium "Nanoscience and
Quantum Physics 2011" (nanoPHYS'11)
�@�@�@�@ International House of Japan, Roppongi,
Tokyo, Japan, 2011.1-26-28 (1.27)
�@�@�@�@ (Invited talk)
33.�@�@ Clusters and the equation of state in
core-collapse supernovae,
�@�@�@�@ K. Sumiyoshi
�@�@�@�@ International workshop on "Clusters in
Nuclei and Nuclear Matter: Nuclear Structure,
�@�@�@�@ Heavy Ion Collisions, and
Astrophysics"
�@�@�@�@ ECT*, European Centre for Theoretical
Studies in Nuclear Physics and Related Areas,
�@�@�@�@ Trento, Italy 2011.6.13-17 (6.16)
�@�@�@�@ (Invited Talk)
34.�@�@ Progress of supernova simulations with the
Shen equation of state,
�@�@�@�@ K. Sumiyoshi
�@�@�@�@ International workshop on
"Microphysics in Computational Relativistic Astrophysics"
�@�@�@�@ Perimeter Institute for Theoretical
Physics, Waterloo, Canada
�@�@�@�@ 2011.6.20-6.24 (6.21)
�@�@�@�@ (Invited Talk)
35.�@�@ Numerical challenges in physics of
core-collapse supernovae: the role of dense matter and neutrinos
�@�@�@�@ K. Sumiyoshi
�@�@�@�@ Third International Conference on Nuclear
Fragmentation: From Basic Research to Applications
�@�@�@�@ (NUFRA2011)
�@�@�@�@ Kemer, Turkey
�@�@�@�@ 2011.10.2-10.9 (10.4)
�@�@�@�@ (Invited Talk)
36.
�@ Progress of the equation of state table
for supernova simulations and its influence
�@�@�@�@ K. Sumiyoshi
�@�@�@�@ the 11th International Symposium on Origin
of Matter and Evolution of Galaxies (OMEG11)
�@�@�@�@ RIKEN, Wako, Saitama, Japan
�@�@�@�@ 2011.11.14-17 (11.14)
37.�@�@ Numerical modeling of core-collapse
supernovae and compact objects,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ IAU Symposium 291: Neutron Stars and
Pulsars: Challenges and Opportunities after 80 years,
�@�@�@�@ IAU General Assembly XXVIII, Beijing,
China,
�@�@�@�@ 2012.8.20-31 (8.20)
�@�@�@�@ (Invited talk)
38.�@�@ Numerical modeling of core-collapse
supernovae with progress in nuclear physics and supercomputing,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ International Symposium: Quarks to Universe
in Computational Science (QUCS 2012),
�@�@�@�@ Nara Prefectural New Public Hall,
2012.12.13-16 (12.16)
�@�@�@�@ (Invited talk)
˜a•¶ŽGŽ�
1.�@�@�@ Quark-gluon
plasma in the cosmic QCD phase transition
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ Œ´ŽqŠjŒ¤‹†, 34
(1990) 153-156.
2.�@�@�@ ‰F’ˆ�‰Šú‚Ì‚p‚b‚c‘Š“]ˆÚ‚É‚¨‚¯‚éƒoƒŠƒIƒ“�”–§“x•ª•z
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ Œ´ŽqŠjŒ¤‹†, 35
(1991) 175-179.
3.�@�@�@ ‘Š‘Î˜_“I•½‹Ï�ê—�˜_‚É‚æ‚éŠj•¨Ž¿‚Ì�ó‘Ô•û’öŽ®‚Æ’†�«Žq�¯’a�¶
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‘f—±Žq˜_Œ¤‹†, 88
(1993) B9.
4.�@�@�@ ’´�V�¯”š”‹y‚Ñ’†�«Žq�¯’a�¶Žž‚ÌŠj•¨Ž¿‚Ì‘Š‘Î˜_“I�ó‘Ô•û’öŽ®‚ÌŒ¤‹†
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ Œ´ŽqŠjŒ¤‹†, 38
(1993) 21-28.
5.�@�@�@ VPP500‚É‚¨‚¯‚éƒuƒ�ƒbƒNŽO�d‘Ίp�s—ñ‚Ì’¼�Ú‰ð–@‚Ì•À—ñ‰»
�@�@�@�@ �Z‹gŒõ‰î�A�^�è�rˆê
�@�@�@�@ �î•ñ�ˆ—�Šw‰ïŒ¤‹†•ñ��, 96
(1996) 79-82.
6.�@�@�@ •À—ñ‰»Œø—¦‚Ì—\‘ª‚Æ•]‰¿‚ɂ‚¢‚Ä
�@�@�@�@ --- ‚u‚o‚o‚T‚O‚O‚É‚¨‚¯‚é�s—ñ‰ð–@•À—ñ‰»‚Ì�ê�‡ ---
�@�@�@�@ �Z‹gŒõ‰î�A�^�è�rˆê
�@�@�@�@ •¨�«Œ¤‚¾‚æ‚è, 37
(1997) 37-38.
7.�@�@�@ •sˆÀ’èŠj‚©‚çrƒvƒ�ƒZƒXŠÏ‘ªƒf�[ƒ^‚Ö
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‘f—±Žq˜_Œ¤‹† 103 (2001) 50-52.
8.�@�@�@ ’´�V�¯”š”‚É‚¨‚¯‚é‚’ƒvƒ�ƒZƒXŒ³‘f�‡�¬
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‰F’ˆ•úŽË�ü, 4
(2004) 15-25.
9.�@�@�@ ƒuƒ‰ƒbƒNƒz�[ƒ‹’a�¶’¼‘O‚̃jƒ…�[ƒgƒŠƒm‚Å�‚‰·�‚–§“x•¨Ž¿‚ð’T‚é
�@�@�@�@ �Z‹gŒõ‰î�@�@�@�@�@
�@�@�@�@ Œ´ŽqŠjŒ¤‹†, 55
(2010) 64-75.
Šw‰ïŽ�‰ð�à“™
1.�@�@�@ ”ñ“™•û�«‚Ì‹‚¢çtŽË�ê‚É‚¨‚¯‚é—A‘—ŒvŽZ�F’´�V�¯”š”‚É‚¨‚¯‚éƒjƒ…�[ƒgƒŠƒmçtŽË—A‘—‚Ì—á
�@�@�@�@ �u�À�@çtŽË—¬‘̃Vƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“�@‚Q�Í
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ƒvƒ‰ƒYƒ}�EŠj—Z�‡Šw‰ïŽ��A‘æ88Šª‘æ10�†p.610-617�i‚Q‚O‚P‚Q”N‚P‚OŒŽ�†�j
�@�@�@�@ J.
Plasma Fusion Research 88 (2012) 610-617
Œû“ª”•\�i�‘“à‰ï‹c“™�j
1.�@�@�@ Color
flux tube model ‚É‚æ‚équark gluon plasma ‚©‚ç‚Ì hadron evaporation
�@�@�@�@ �Z‹gŒõ‰î�A“ú‰ºŒ’—S�A�_”ö—˜–¾�AŠ�–ì•q‹M
�@�@�@�@ “ú–{•¨—�Šw‰ï�A“ŒŠC‘åŠw�A‚P‚X‚W‚X.‚R
2.�@�@�@ Time
evolution of baryon number density during the QCD phase transition
�@�@�@�@ in the
early Universe
�@�@�@�@ �Z‹gŒõ‰î�A“ú‰ºŒ’—S�A�_”ö—˜–¾�AŠ�–ì•q‹M
�@�@�@�@ “ú–{•¨—�Šw‰ï�A‹{�è‘åŠw�A‚P‚X‚W‚X.‚P‚O
3.�@�@�@ Cosmic
QCD phase transition and quark gluon plasma
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ Hadrons
and Hadronic Matter Œ¤‹†‰ï
�@�@�@�@ “Œ‘匴ŽqŠjŒ¤‹†�Š�A‚P‚X‚W‚X.‚P‚Q
4.�@�@�@ Quark
gluon plasma in the early Universe
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ �‚ƒGƒlƒ‹ƒM�[‘f—±ŽqŒ´ŽqŠj”½‰žŒ¤‹†‰ï�A“Œ‹ž“s—§‘å�A‚P‚X‚X‚O.‚P
5.�@�@�@ QCD
phase transition in the early Universe
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‚p‚b‚c•‚¶�ž‚ߌ¤‹†‰ï�A‹ž‘åŠîŒ¤�A‚P‚X‚X‚O.‚R
6.�@�@�@ What is
the fate of baryon density fluctuation in cosmic QCD phase transition?
�@�@�@�@ �Z‹gŒõ‰î�AŠ�–ì•q‹M�AC.R.Alcock�AG.J.Mathews
�@�@�@�@ “ú–{•¨—�Šw‰ï�A‘å�ã‘åŠw�A‚P‚X‚X‚O.‚S
7.�@�@�@ New survival
condition of primordial strange quark matter
�@�@�@�@ �Z‹gŒõ‰î�AŠ�–ì•q‹M
�@�@�@�@ “ú–{•¨—�Šw‰ï�A“Þ—Ç�—Žq‘å�A‚P‚X‚X‚O.‚P‚O
8.�@�@�@ Hot
neutron star in relativistic mean field theory
�@�@�@�@ �Z‹gŒõ‰î�A�›Œ´—Yˆê�A�²�X–Ø�L�A“yŠò”Ž
�@�@�@�@ “ú–{•¨—�Šw‰ï�A“Œ‹ž—�‰È‘å�A‚P‚X‚X‚P.‚R
9.�@�@�@ Relativistic
mean field theory ‚É‚æ‚é’†�«Žq�¯�E’´�V�¯‚Ì�ó‘Ô•û’öŽ®
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ’´�V�¯‚P‚X‚W‚VA ‚ÆŠÖ˜A“V‘Ì (III) Œ¤‹†‰ï�A“Œ‹ž‘åŠw�A‚P‚X‚X‚Q.‚P
10.�@�@ Relativistic
mean field theory ‚É‚æ‚é�‚‰·�‚–§“xŠj•¨Ž¿‚Ì�ó‘Ô•û’öŽ®‚Æ’´�V�¯ƒjƒ…�[ƒgƒŠƒm I
�@�@�@�@ �Z‹gŒõ‰î�A—é–Ø‰p”V�A“yŠò”Ž
�@�@�@�@ “ú–{•¨—�Šw‰ï�AŒc‰ž‘åŠw�A‚P‚X‚X‚Q.‚R
11.�@�@ Comparison
of the relativistic mean field approach with the Skyrme interaction
�@�@�@�@ for
infinite matter and nuclei
�@�@�@�@ �Z‹gŒõ‰î�AD. Hirata�A“yŠò”Ž�A�²�ì�O�K
�@�@�@�@ “ú–{•¨—�Šw‰ï�A�VŠƒ‘åŠw�A‚P‚X‚X‚Q.‚P‚O
12.�@�@ Supernova
EOS in relativistic mean field theory constrained by unstable nuclei
�@�@�@�@ �Z‹gŒõ‰î�A “yŠò”Ž�A—é–Ø‰p”V
�@�@�@�@ ’ZŽõ–½Šjƒr�[ƒ€‚̉Ȋw‚X‚QŒ¤‹†‰ï�A“Œ‘匴ŽqŠjŒ¤‹†�Š�A‚P‚X‚X‚R.‚P
13.�@�@ ‘Š‘Î˜_“I•½‹Ï�ê—�˜_‚É‚æ‚é’´�V�¯•¨Ž¿‚Ì�ó‘Ô•û’öŽ®‚Æ’†�«Žq�¯‚Ì’a�¶ I
�@�@�@�@ �Z‹gŒõ‰î�A—é–Ø‰p”V�A“yŠò”Ž
�@�@�@�@ “ú–{•¨—�Šw‰ï�A“Œ–k‘åŠw�A‚P‚X‚X‚R.‚R
14.�@�@ ‘Š‘Î˜_“I•½‹Ï�ê—�˜_‚É‚æ‚éŠj•¨Ž¿‚Ì�ó‘Ô•û’öŽ®‚Æ’†�«Žq�¯’a�¶
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ƒnƒhƒ�ƒ“•¨Ž¿‚Ì�”‘Š‚Æ’†�«Žq�¯‚Ì”M“I�i‰»Œ¤‹†‰ï�A‹ž‘åŠîŒ¤�A‚P‚X‚X‚R.‚U
15.�@�@ Relativistic
mean field theory for unstable nuclei and its applications
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ƒnƒhƒ�ƒ“‘½‘ÌŒn‚̃Vƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“Œ¤‹†‰ï�AŒ´Œ¤�A‚P‚X‚X‚R.‚P‚O
16.�@�@ Ží�X‚Ì—LŒÀ‰·“x�ó‘Ô•û’öŽ®‚ÆŒ´Žn’†�«Žq�¯‚Ì�i‰» I
�@�@�@�@ �Z‹gŒõ‰î�AŒKŒ´�mŽj�A“yŠò”Ž�A—é–Ø‰p”V
�@�@�@�@ “ú–{•¨—�Šw‰ï�A•Ÿ‰ª�H‘å�A‚P‚X‚X‚S.‚R
17.�@�@ ’´�V�¯•¨Ž¿‚Ì�ó‘Ô•û’öŽ®‚ÆŒ´Žn’†�«Žq�¯
�@�@�@�@ �Z‹gŒõ‰î�A“yŠò”Ž
�@�@�@�@ “ú–{•¨—�Šw‰ï�AŽRŒ`‘å�A‚P‚X‚X‚S.‚P‚O
18.�@�@ •sˆÀ’茴ŽqŠj�\‘¢‚Æ‚»‚̉ž—p
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ƒVƒ“ƒ|ƒWƒEƒ€�uƒX�[ƒp�[ƒRƒ“‚ƉŽ‹‰»‚Ì—˜—p�v�A—�Œ¤�A‚P‚X‚X‚S.‚P‚P
19.�@�@ Œ´Žn’†�«Žq�¯—â‹p‚Æ’´�V�¯ƒjƒ…�[ƒgƒŠƒm‚Ö‚Ì‘Î�̃Gƒlƒ‹ƒM�[‚̉e‹¿
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ’ZŽõ–½Šjƒr�[ƒ€‚̉Ȋw‚X‚SŒ¤‹†‰ï�A“Œ‘匴ŽqŠjŒ¤‹†�Š�A‚P‚X‚X‚T.‚P
20.�@�@ ‘Š‘Î˜_“I Brueckner
Hartree Fock —�˜_‚É‚æ‚é�ó‘Ô•û’öŽ®‚Æ’†�«Žq�¯ II
�@�@�@�@ �Z‹gŒõ‰î�A �e�¼˜a�_�A “yŠò”Ž
�@�@�@�@ “ú–{•¨—�Šw‰ï�A�_“Þ�ì‘å�A‚P‚X‚X‚T.‚R
21.�@�@ Unstable
nuclei and relativistic EOS for neutron stars and supernovae
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ •sˆÀ’èŠj‚Ì�\‘¢‚Æ”½‰žŒ¤‹†‰ï�A�ã‘åŠj•¨—�ƒZƒ“ƒ^�[�A‚P‚X‚X‚T.‚V
22.�@�@ ‘Š‘Î˜_“I•½‹Ï�ê—�˜_‚É‚æ‚é•ÏŒ`Šj‚ÌŒn“�“IŒ¤‹†
�@�@�@�@ �Z‹gŒõ‰î�AD. Hirata�A�›Œ´—Yˆê�A“yŠò”Ž�A’J”¨—E•v
�@�@�@�@ “ú–{•¨—�Šw‰ï�A’†•”‘å�A‚P‚X‚X‚T.‚X
23.�@�@ Neutron
stars and unstable nuclei in relativistic many body framework
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ’ZŽõ–½Šjƒr�[ƒ€‚̉Ȋw‚X‚TŒ¤‹†‰ï�A“Œ‘匴ŽqŠjŒ¤‹†�Š�A‚P‚X‚X‚U.‚P
24.�@�@ VPP500‚É‚æ‚éƒuƒ�ƒbƒNŽO�d‘Ίp�s—ñ‚Ì’¼�Ú‰ð–@
�@�@�@�@ �Z‹gŒõ‰î�A�^�è�rˆê
�@�@�@�@ �”’lƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“‚É‚æ‚é“V•¶Šw�A�‘—§“V•¶‘ä�A‚P‚X‚X‚U.‚P
25.�@�@ ƒuƒ�ƒbƒNŽO�d‘Ίp�s—ñ‰ð–@‚Ì•À—ñ‰»‚ÆçtŽË—A‘—
�@�@�@�@ �Z‹gŒõ‰î�A�^�è�rˆê
�@�@�@�@ ‰F’ˆ‚É‚¨‚¯‚é�\‘¢Œ`�¬‚ÆçtŽË—A‘—�A‹ž‘åŠîŒ¤�A‚P‚X‚X‚U.‚R
26.�@�@ VPP500‚É‚¨‚¯‚éƒuƒ�ƒbƒNŽO�d‘Ίp�s—ñ‚Ì’¼�Ú‰ð–@‚Ì•À—ñ‰»
�@�@�@�@ �Z‹gŒõ‰î�A�^�è�rˆê
�@�@�@�@ ŒvŽZ‹@ƒA�[ƒLƒeƒNƒ`ƒƒŒ¤‹†‰ï�AŽD–y�A‚P‚X‚X‚U.‚R
27.�@�@ •À—ñ‰»Œø—¦‚Ì—\‘ª‚Æ•]‰¿‚ɂ‚¢‚Ä -- VPP500‚É‚¨‚¯‚é�s—ñ‰ð–@•À—ñ‰»‚Ì�ê�‡ --
�@�@�@�@ �Z‹gŒõ‰î�A�^�è�rˆê
�@�@�@�@ •¨�«Œ¤‹†‚É‚¨‚¯‚éŒvŽZ•¨—�Šw�G •À—ñŒvŽZ‚ÌŒ»�ó‚Ì‚Æ�¡Œã‚Ì“W–]
�@�@�@�@ •¨�«Œ¤�A“Œ‹ž�A‚P‚X‚X‚V.‚U
28.�@�@ Light
Unstable Nuclei in Relativistic Mean Field Theory
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‚q‚hƒr�[ƒ€‚Ì•¨—�‚ð�l‚¦‚éƒ��[ƒNƒVƒ‡ƒbƒv�u•sˆÀ’èŠj‚ł̃Nƒ‰ƒXƒ^�[•¨—��v
�@�@�@�@ —�Œ¤�A˜aŒõ�A‚P‚X‚X‚V.‚W
29.�@�@ �Å�¬Ž¿—Ê’†�«Žq�¯‚Ì”š”‚Ær-process
�@�@�@�@ �Z‹gŒõ‰î�AŽR“c�͈ê�A—é–Ø‰p”V�AW. Hillebrandt
�@�@�@�@ “ú–{•¨—�Šw‰ï�A“s—§‘å�A‚P‚X‚X‚V.‚X
30.�@�@ Mean-field
frameworks for astrophysics
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ The 3rd
workshop for Physics of RI Beam Factory: "Mean field in unstable
nuclei"
�@�@�@�@ —�Œ¤�A˜aŒõ�A‚P‚X‚X‚V.‚P‚P
31.�@�@ •sˆÀ’èŠj�\‘¢‚ÌŒn“�“IŒ¤‹†�[Œ´ŽqŠj‚ÌŒ`‚ð‚³‚®‚é�[
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ƒVƒ“ƒ|ƒWƒEƒ€�uƒX�[ƒp�[ƒRƒ“ƒsƒ…�[ƒ^‚Æ�ê—pŒvŽZ‹@‚É‚¨‚¯‚éŒvŽZ‰ÈŠw�v
�@�@�@�@ —�Œ¤�A˜aŒõ�A‚P‚X‚X‚W.‚R
32.�@�@ Table
of Relativistic EOS and its astrophysical applications
�@�@�@�@ �Z‹gŒõ‰î�AH. Shen�A�e�¼˜a�_�A“yŠò”Ž
�@�@�@�@ “ú–{•¨—�Šw‰ï�A�H“c‘å�A‚P‚X‚X‚W.‚P‚O
33.�@�@ Relativistic
mean field framework for unstable nuclei and dense matter
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ The 6th workshop
for Physics of RI Beam Factory: "Structure of unstable nuclei"
�@�@�@�@ —�Œ¤�A˜aŒõ�A‚P‚X‚X‚W.‚P‚P
34.�@�@ �@ Relativistic EOS and its application on
supernova simulation
�@�@�@�@ �Z‹gŒõ‰î�AH. Shen�A�e�¼˜a�_�A“yŠò”Ž�A—é–Ø‰p”V�AŽR“c�͈ê
�@�@�@�@ �u’†�«Žq�¯‚Ì’a�¶‚Æ�i‰»�F ŠÏ‘ª‚Æ—�˜_‚Ì�V“WŠJ�vŒ¤‹†‰ï
�@�@�@�@ “Œ‹ž‘åŠw�iRESCEU�j�A‚P‚X‚X‚W.‚P‚Q
35.�@�@ Relativistic
EOS table for supernova explosion and r-process
�@�@�@�@ �Z‹gŒõ‰î�AH. Shen�A�e�¼˜a�_�A—é–Ø‰p”V�AŽR“c�͈ê�A“yŠò”Ž
�@�@�@�@ �u‹ÉŒÀ�ðŒ�‚É‚¨‚¯‚éƒnƒhƒ�ƒ“‰ÈŠw�vŒ¤‹†‰ï
�@�@�@�@ “ú–{Œ´Žq—ÍŒ¤‹†�Š�A‚P‚X‚X‚X.‚R
36.�@�@ Hydrodynamics
of neutrino-driven wind for r-process
�@�@�@�@ �Z‹gŒõ‰î�A—é–Ø‰p”V�AŽR“c�͈ê
�@�@�@�@ “ú–{•¨—�Šw‰ï�A�L“‡‘å�A‚P‚X‚X‚X.‚R
37.�@�@ r-process
condition by simulations of neutrino-driven wind
�@�@�@�@ �Z‹gŒõ‰î�A—é–Ø‰p”V�A‘å’΂©‚¨‚è�AŽ›àV�^—�Žq�AŽR“c�͈ê
�@�@�@�@ “ú–{•¨—�Šw‰ï�A“‡�ª‘å�A‚P‚X‚X‚X.‚X
38.�@�@ Unstable
nuclei and EOS table for supernova and r-process simulations
�@�@�@�@ in
relativistic many body approach
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ŠîŒ¤Œ¤‹†‰ï�u•sˆÀ’èŠj‚Ì�\‘¢‚Æ”½‰ž�v
�@�@�@�@ ‹ž“s‘åŠwŠî‘b•¨—�ŠwŒ¤‹†�Š�A‚P‚X‚X‚X.‚P‚P
39.�@�@ Supernova
and r-process simulations with relativistic EOS table
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‘æ‚Q‰ñ�u‹ÉŒÀ�ðŒ�‚É‚¨‚¯‚éƒnƒhƒ�ƒ“‰ÈŠw�vŒ¤‹†‰ï
�@�@�@�@ Œ´Žq—ÍŒ¤‹†�Š�A‚Q‚O‚O‚O.‚P
40.�@�@ ’´�V�¯‚Æ‚’ƒvƒ�ƒZƒX�F•sˆÀ’èŠj•¨—�‚©‚ç‚̃Aƒvƒ��[ƒ`
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ CNS/RIKENŒ¤‹†‰ï�u’áƒGƒlƒ‹ƒM�[RIB‚Ì•¨—��v
�@�@�@�@ —�‰»ŠwŒ¤‹†�Š�A‚Q‚O‚O‚O.‚W
41.�@�@ r-process
in prompt explosion of supernova
�@�@�@�@ �Z‹gŒõ‰î�AŽ›‘ò�^—�Žq�AŽR“c�͈ê�A—é–Ø‰p”V�AG. Mathews�AŠ�–ì•q‹M
�@�@�@�@ “ú–{•¨—�Šw‰ï�A�VŠƒ‘å�A‚Q‚O‚O‚O.‚X
42.�@�@ r-process
in prompt explosion of supernova
�@�@�@�@ �Z‹gŒõ‰î�AŽ›‘ò�^—�Žq�AŽR“c�͈ê�A—é–Ø‰p”V�AG. Mathews�AŠ�–ì•q‹M
�@�@�@�@ “ú–{“V•¶Šw‰ï�AˆÉ�¨�èŽs�A‚Q‚O‚O‚O.‚P‚O
43.�@�@ Supernova
and r-process simulations with relativistic EOS table
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ¢ƒNƒH�[ƒN�Eƒnƒhƒ�ƒ“•¨Ž¿‚Æ’†�«Žq�¯�vŒ¤‹†‰ï
�@�@�@�@ “ú–{‘åŠw�å�ÎŒ´—¾�A” �ª’¬�A‚Q‚O‚O‚O.‚P‚P
44.�@�@ •sˆÀ’èŠj‚©‚ç‚’ƒvƒ�ƒZƒXŠÏ‘ªƒf�[ƒ^‚Ö
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‘æ‚P‚R‰ñ—�˜_“V•¶Šw�§’k‰ïƒVƒ“ƒ|ƒWƒEƒ€�u‚Q‚P�¢‹I‚ðŒ}‚¦‚é—�˜_“V•¶Šw‚Ì‘�Ї‚Æ“W–]�v
�@�@ ‹ž“s‘åŠwŠî‘b•¨—�ŠwŒ¤‹†�Š�A‚Q‚O‚O‚O.‚P‚Q
45.�@�@ r-process
nucleosynthesis in supernova explosions
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ �uŒ³‘f‚Ì‹NŒ¹‚Æ�‰Šú‰F’ˆ�E‹â‰Í‚Ì�i‰»�vŒ¤‹†‰ï
�@�@�@�@ �ã’q‘åŠw�A‚Q‚O‚O‚P.‚P
46.�@�@ Scenarios
of r-process in collapse-driven supernovae
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‘æ‚R‰ñ�u‹ÉŒÀ�ðŒ�‚É‚¨‚¯‚éƒnƒhƒ�ƒ“‰ÈŠw�vŒ¤‹†‰ï
�@�@�@�@ Œ´Žq—ÍŒ¤‹†�Š�A‚Q‚O‚O‚P.‚P
47.�@�@ •sˆÀ’èŠjƒf�[ƒ^‚©‚ç’´�V�¯”š”�E‚’ƒvƒ�ƒZƒX‚Ö
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ �uŒ´ŽqŠj•¨—�‚Ì�ŋ߂̔“W‚Æ�¡Œã‚Ì“W–]�vŒ¤‹†‰ï
�@�@�@�@ �‚ƒGƒlƒ‹ƒM�[‰Á‘¬ŠíŒ¤‹†‹@�\�A‚Q‚O‚O‚P.‚R
48.�@�@ Supernova
explosion with relativistic EOS table
�@�@�@�@ �Z‹gŒõ‰î�A—é–Ø‰p”V�AŽR“c�͈ê�A“yŠò”Ž
�@�@�@�@ “ú–{•¨—�Šw‰ï�A’†‰›‘åŠw�A‚Q‚O‚O‚P.‚R
49.�@�@ Progress
of studies on supernova explosion and r-process
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‘æ‚S‰ñ�u‹ÉŒÀ�ðŒ�‚É‚¨‚¯‚éƒnƒhƒ�ƒ“‰ÈŠw�vŒ¤‹†‰ï
�@�@�@�@ Œ´Žq—ÍŒ¤‹†�Š�A‚Q‚O‚O‚Q.‚R
50.�@�@ �d—Í•ö‰óŒ^’´�V�¯”š”‚É‚¨‚¯‚é‚’ƒvƒ�ƒZƒXŒ³‘f�‡�¬
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ �uŠÂ‹«Œø‰Ê‚ð�l—¶‚µ‚½�P�¯�i‰»
--- ‹â‰Í�A�¯’c�i‰»‚ÌŒ¤‹†‚Ƃ̌‹�‡�vŒ¤‹†‰ï
�@�@�@�@ –kŠC“¹‘åŠw�A‚Q‚O‚O‚Q.‚R
51.�@�@ Astrophysical
reaction rate for a(an, ƒÁ) 9Be by photo-disintegration II
�@�@�@�@ �Z‹gŒõ‰î�A‰F“s‹{�O�Í�AŒã�_�iŽj�AŠ�–ì•q‹M
�@�@�@�@ “ú–{•¨—�Šw‰ï�A—§–½ŠÙ‘åŠw�A‚Q‚O‚O‚Q.‚R
52.�@�@ Stellar
core collapse in supernova simulation with relativistic EOS table
�@�@�@�@ �Z‹gŒõ‰î�AŽR“c�͈ê�A—é–Ø‰p”V�A“yŠò”Ž
�@�@�@�@ “ú–{•¨—�Šw‰ï�A—§‹³‘åŠw�A‚Q‚O‚O‚Q.‚X
53.�@�@ ƒjƒ…�[ƒgƒŠƒm—A‘——¬‘ÌŒvŽZ‚É‚æ‚é’´�V�¯”š”
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ �uƒjƒ…�[ƒgƒŠƒm‚Æ’´�V�¯”š”�vŒ¤‹†‰ï
�@�@�@�@ “Œ‹ž‘åŠw�A‚Q‚O‚O‚R.‚Q
54.�@�@ Simulations
of collapse-driven supernovae and r-process
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ Symposium
on "First-Generation Objects in the Universe"
�@�@�@�@ ’}”g‘åŠw�A‚Q‚O‚O‚R.‚R
55.�@�@ ƒjƒ…�[ƒgƒŠƒm—A‘——¬‘ÌŒvŽZ‚É‚æ‚é�d—Í•ö‰óŒ^’´�V�¯”š”ƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“
�@�@�@�@ �Z‹gŒõ‰î�AŽR“c�͈ê�A—é–Ø‰p”V
�@�@�@�@ “ú–{“V•¶Šw‰ï�A“Œ–k‘åŠw�A‚Q‚O‚O‚R.‚R
56.�@�@ Core
collapse and bounce in supernova simulation with relativistic EOS table
�@�@�@�@ �Z‹gŒõ‰î�AŽR“c�͈ê�A—é–Ø‰p”V�A“yŠò”Ž
�@�@�@�@ “ú–{•¨—�Šw‰ï�A“Œ–kŠw‰@‘åŠw�A‚Q‚O‚O‚R.‚R
57.�@�@ ‚’ƒvƒ�ƒZƒXŒ³‘f�‡�¬‚Æ’´�V�¯”š”‚ÌŠj•¨—�
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ “ú–{•¨—�Šw‰ï�A“Œ–kŠw‰@‘åŠw�A‚Q‚O‚O‚R.‚R
�@�@�@�@ ƒVƒ“ƒ|ƒWƒEƒ€ˆË—Š�u‰‰
58.�@�@ Relativistic
EOS table and collapse-driven supernova explosions,
�@�@�@�@ �Z‹gŒõ‰î�A�¬–씎”V�A—é–Ø‰p”V�AŽR“c�͈ê
�@�@�@�@ “ú–{“V•¶Šw‰ï�Aˆ¤•Q‘åŠw�A‚Q‚O‚O‚R.‚X
59.�@�@ Origin of
heavy elements: R-process in supernova explosion
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‘¾—zŒ—ƒVƒ“ƒ|ƒWƒEƒ€�E‚r‚s‚dŒ¤‹†�W‰ï�A–¼ŒÃ‰®‘åŠw�A‚Q‚O‚O‚S.‚P
60.�@�@ ƒjƒ…�[ƒgƒŠƒm—A‘——¬‘ÌŒvŽZ‚É‚æ‚é’´�V�¯”𔂯Šj•¨—�
�@�@�@�@ �Z‹gŒõ‰î�AŽR“c�͈ê�A�¬–씎”V�A—é–Ø‰p”V
�@�@�@�@ “ú–{“V•¶Šw‰ï�A–¼ŒÃ‰®‘åŠw�A‚Q‚O‚O‚S.‚R
61.�@�@ ƒjƒ…�[ƒgƒŠƒm—A‘——¬‘ÌŒvŽZ‚É‚æ‚é’´�V�¯”š”ƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“
�@�@�@�@ �Z‹gŒõ‰î�AŽR“c�͈ê�A—é–Ø‰p”V�A“yŠò”Ž
�@�@�@�@ “ú–{•¨—�Šw‰ï�A‹ã�B‘åŠw�A‚Q‚O‚O‚S.‚R
62.�@�@ ’´�V�¯”š”‚Ì�”’lŒvŽZ‚ƃjƒ…�[ƒgƒŠƒm‚Ì–ðŠ„
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ RCNPƒ��[ƒNƒVƒ‡ƒbƒv�u‰F’ˆ“V‘ÌŠj•¨—��[Šj•¨—�‚ÌŽ‹“_‚©‚ç�[�v
�@�@�@�@ ‘å�ã‘åŠwŠj•¨—�Œ¤‹†ƒZƒ“ƒ^�[�A‚Q‚O‚O‚S.‚T
63.�@�@ ’´�V�¯”š”ƒ�ƒJƒjƒYƒ€‚É•K—v‚È•sˆÀ’èŠj•¨—�
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ Œ¤‹†‰ï�u•sˆÀ’èŠj•¨—��@‚±‚Ì‚P‚O”N‚Æ‚±‚ê‚©‚ç�v
�@�@�@�@ —�‰»ŠwŒ¤‹†�Š�A‚Q‚O‚O‚S.‚U�iposter short oral presentaion�j
64.�@�@ ƒjƒ…�[ƒgƒŠƒm—A‘——¬‘Ì—ÍŠwŒvŽZ‚É‚æ‚é’´�V�¯”š”�FƒoƒEƒ“ƒXŒã‚Ì�U‚é•‘‚¢
�@�@�@�@ �Z‹gŒõ‰î�AŽR“c�͈ê�A—é–Ø‰p”V
�@�@�@�@ “ú–{“V•¶Šw‰ï�AŠâŽè‘åŠw�A‚Q‚O‚O‚S.‚X
65.�@�@ ’´�V�¯”𔂯ƒÁ�AƒË”½‰ž
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ RCNPƒ��[ƒNƒVƒ‡ƒbƒv�uMeVƒÁ�ü‚É‚æ‚éŠj•¨—��v
�@�@�@�@ ‘å�ã‘åŠwŠj•¨—�Œ¤‹†ƒZƒ“ƒ^�[�A‚Q‚O‚O‚S.‚P‚O
66.�@�@ Core-collapse
supernovae and nuclear physics
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ Œ¤‹†‰ï�u�d—Í•ö‰óŒ^’´�V�¯‚ð•‘‘ä‚Æ‚·‚é—l�X‚È�‚ƒGƒlƒ‹ƒM�[•¨—�Œ»�Û�v
�@�@�@�@ “Œ‹ž‘åŠw�A‚Q‚O‚O‚T.‚Q
67.�@�@ Core-collapse
supernovae: Long-term effects of equation of state
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ “Œ‘åCNSŒ¤‹†‰ï�uŠk–ÍŒ^‚ÌŠw�Û“I“WŠJ�|‰F’ˆ•¨—�‚Æ•¨�«•¨—��|�v
�@�@�@�@ “Œ‹ž‘åŠwŒ´ŽqŠj‰ÈŠwŒ¤‹†ƒZƒ“ƒ^�[�A‚Q‚O‚O‚T.‚R
68.�@�@ ’´�V�¯”š”ƒ�ƒJƒjƒYƒ€‚Æ�dŒ³‘f�‡�¬�Aƒjƒ…�[ƒgƒŠƒm”½‰ž
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ “ú–{•¨—�Šw‰ï�A“Œ‹ž—�‰È‘åŠw�A‚Q‚O‚O‚T.‚R
�@�@�@�@ ƒVƒ“ƒ|ƒWƒEƒ€ˆË—Š�u‰‰
69.�@�@ ƒjƒ…�[ƒgƒŠƒm—A‘——¬‘ÌŒvŽZ‚É‚æ‚é’´�V�¯”𔂯Œ´Žn’†�«Žq�¯
�@�@�@�@ �Z‹gŒõ‰î�AŽR“c�͈ê�A—é–Ø‰p”V�AH. Shen�A�ç—t•q�A“yŠò”Ž
�@�@�@�@ “ú–{•¨—�Šw‰ï�A“Œ‹ž—�‰È‘åŠw�A‚Q‚O‚O‚T.‚R
70.�@�@ ’´�V�¯”š”ƒ�ƒJƒjƒYƒ€‚ƃjƒ…�[ƒgƒŠƒm”½‰ž
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ’´�V�¯ƒË�{MSW�{Œ³‘f�‡�¬ƒ��[ƒNƒVƒ‡ƒbƒv
�@�@�@�@ �‘—§“V•¶‘ä�A‚Q‚O‚O‚T.‚S
71.�@�@ �d—Í•ö‰óŒ^’´�V�¯”š”�Fƒuƒ‰ƒbƒNƒz�[ƒ‹Œ`�¬‚̃jƒ…�[ƒgƒŠƒmƒVƒOƒiƒ‹
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‘æ‚P‚W‰ñ—�˜_“V•¶Šw�§’k‰ïƒVƒ“ƒ|ƒWƒEƒ€�u�‚ƒGƒlƒ‹ƒM�[“V‘Ì•¨—�Šw‚Ì�Å‘O�ü�v
�@�@�@�@ ‹ž“s‘åŠwŠî‘b•¨—�ŠwŒ¤‹†�Š�A‚Q‚O‚O‚T.‚P‚Q
72.�@�@ ƒjƒ…�[ƒgƒŠƒmçtŽË—¬‘ÌŒvŽZ‚É‚æ‚é�d—Í•ö‰óŒ^’´�V�¯”𔂯ƒuƒ‰ƒbƒNƒz�[ƒ‹Œ`�¬
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‘å‹K–̓Vƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“ƒvƒ�ƒWƒFƒNƒg�Eƒ†�[ƒU�[ƒYƒ~�[ƒeƒBƒ“ƒO
�@�@�@�@ �‘—§“V•¶‘ä“V•¶Šwƒf�[ƒ^‰ð�ÍŒvŽZƒZƒ“ƒ^�[�A‚Q‚O‚O‚U.‚P
73.�@�@ ’´�V�¯”š”‚É‚¨‚¯‚éƒjƒ…�[ƒgƒŠƒm”½‰ž
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ KEK
Mini-Workshop�uŠjŽqƒXƒsƒ“�\‘¢‚ÉŠÖ‚·‚é�ŋ߂̔“W‚Æ�¡Œã‚Ì“W–]�v
�@�@�@�@ �‚ƒGƒlƒ‹ƒM�[‰Á‘¬ŠíŒ¤‹†‹@�\�A‘f—±ŽqŒ´ŽqŠjŒ¤‹†�Š�A‚Q‚O‚O‚U.‚R
74.�@�@ ƒjƒ…�[ƒgƒŠƒm—A‘——¬‘ÌŒvŽZ‚É‚æ‚錴Žn’†�«Žq�¯�Eƒuƒ‰ƒbƒNƒz�[ƒ‹Œ`�¬
�@�@�@�@ �Z‹gŒõ‰î�AŽR“c�͈ê�A—é–Ø‰p”V
�@�@�@�@ “ú–{“V•¶Šw‰ï�A”N‰ï�A‚Q‚O‚O‚U.‚R
75.�@�@ ‘县—Ê�¯�d—Í•ö‰ó‚É‚æ‚éƒuƒ‰ƒbƒNƒz�[ƒ‹Œ`�¬‚Æ�ó‘Ô•û’öŽ®
�@�@�@�@ �Z‹gŒõ‰î�AŽR“c�͈ê�A—é–Ø‰p”V�A�ç—t•q
�@�@�@�@ “ú–{•¨—�Šw‰ï�A“Þ—Ç�—Žq‘åŠw�A‚Q‚O‚O‚U�D‚X�D‚Q‚O�|‚Q‚R�i�u‰‰“ú‚X�D‚Q‚O�j
76.�@�@ ƒjƒ…�[ƒgƒŠƒmçtŽË—¬‘ÌŒvŽZ‚É‚æ‚é’´�V�¯”š”�Eƒuƒ‰ƒbƒNƒz�[ƒ‹Œ`�¬�Eƒjƒ…�[ƒgƒŠƒmƒVƒOƒiƒ‹‚ÌŒ¤‹†
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‘å‹K–̓Vƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“ƒvƒ�ƒWƒFƒNƒg�Eƒ†�[ƒU�[ƒYƒ~�[ƒeƒBƒ“ƒO
�@�@�@�@ �‘—§“V•¶‘ä“V•¶ƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“ƒvƒ�ƒWƒFƒNƒg
�@�@�@�@ �‘—§“V•¶‘ä�A‚Q‚O‚O‚U�D‚P‚P�D‚Q‚X�|‚R‚O�i�u‰‰“ú‚P‚P�D‚R‚O�j
77.�@�@ ’´�V�¯”š”ƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“‚Æ�‚–§“x•¨Ž¿�ó‘Ô•û’öŽ®
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ “Á’è—̈挤‹†�uƒXƒgƒŒƒ“ƒWƒlƒX‚Å’T‚éƒNƒH�[ƒN‘½‘ÌŒn�vŒ¤‹†‰ï
�@�@�@�@ ”MŠC�A‚Q‚O‚O‚U�D‚P‚Q�D‚P‚R�|‚P‚T�i�u‰‰“ú‚P‚Q�D‚P‚T�j
78.�@�@ Neutrinos
from black-hole-forming supernovae and equation of state of dense matter
�@�@�@�@ K.
Sumiyoshi
�@�@�@�@ Œ¤‹†‰ï�u’´�V�¯‚ð•‘‘ä‚Æ‚·‚é�‚ƒGƒlƒ‹ƒM�[•¨—�Œ»�Û�v
�@�@�@�@ “Œ‹ž‘åŠw�A‚Q‚O‚O‚V�D‚Q�D‚P�|‚R�i�u‰‰“ú‚Q�D‚R�j
79.�@�@ ’´�V�¯ƒRƒA�ó‘Ô•û’öŽ®‚ƃjƒ…�[ƒgƒŠƒm
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ RCNPŒ¤‹†‰ï�u’´�V�¯”𔂯ƒjƒ…�[ƒgƒŠƒm�EŒ´ŽqŠj”½‰ž�v
�@�@�@�@ ‘å�ã‘åŠwŠj•¨—�Œ¤‹†ƒZƒ“ƒ^�[(RCNP)�A‚Q‚O‚O‚V�D‚R�D‚Q�|‚R
80.�@�@ ’´�V�¯”š”�ó‘Ô•û’öŽ®ƒf�[ƒ^ƒe�[ƒuƒ‹‚ÌŒ»�ó‚Æ‰Û‘è
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ Numazu
Workshop on Supernova EOS
�@�@�@�@ �À’Ã�‚�ê�A‚Q‚O‚O‚V.‚R�D‚P‚T�|‚P‚V�i�u‰‰“ú‚R�D‚P‚T�j
81.�@�@ ƒuƒ‰ƒbƒNƒz�[ƒ‹Œ`�¬Žž‚̃jƒ…�[ƒgƒŠƒm•ú�o‚É‚¨‚¯‚é�ó‘Ô•û’öŽ®‚̉e‹¿
�@�@�@�@ �Z‹gŒõ‰î�AŽR“c�͈ê�A—é–Ø‰p”V
�@�@�@�@ “ú–{•¨—�Šw‰ï�AŽñ“s‘åŠw“Œ‹ž�A‚Q‚O‚O‚V�D‚R�D‚Q‚T�|‚Q‚W�i�u‰‰“ú‚R�D‚Q‚W�j
82.�@�@ ƒnƒCƒyƒ�ƒ““ü‚è�ó‘Ô•û’öŽ®ƒe�[ƒuƒ‹‚É‚æ‚é�d—Í•ö‰ó‚Ì�”’lƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“
�@�@�@�@ �Z‹gŒõ‰î�A�Î’Ë’m��Žq�A‘å�¼–¾�AŽR“c�͈ê�A—é–Ø‰p”V
�@�@�@�@ “ú–{•¨—�Šw‰ï�A–kŠC“¹‘åŠw�A‚Q‚O‚O‚V�D‚X�D‚Q‚P�|‚Q‚S�i�u‰‰“ú‚X�D‚Q‚S�j
83.�@�@ ƒuƒ‰ƒbƒNƒz�[ƒ‹Œ`�¬’´�V�¯‚̃jƒ…�[ƒgƒŠƒm—\‘ª‚Æ�‚‰·�‚–§“x�ó‘Ô•û’öŽ®
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‘å‹K–̓Vƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“ƒvƒ�ƒWƒFƒNƒg�Eƒ†�[ƒU�[ƒYƒ~�[ƒeƒBƒ“ƒO
�@�@�@�@ �‘—§“V•¶‘ä“V•¶ƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“ƒvƒ�ƒWƒFƒNƒg
�@�@�@�@ �‘—§“V•¶‘ä�A‚Q‚O‚O‚V�D‚P‚P�D‚Q‚X�|‚R‚O�i�u‰‰“ú‚P‚P�D‚R‚O�j
84.�@�@ ’´�V�¯”š”‚Ì‘å‹K–Í�”’lƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ “ú–{•¨—�Šw‰ï�A‹ß‹E‘åŠw�A‚Q‚O‚O‚W�D‚R�D‚Q‚Q�|‚Q‚U�i�u‰‰“ú‚R�D‚Q‚R�j
�@�@�@�@ ƒVƒ“ƒ|ƒWƒEƒ€ˆË—Š�u‰‰
85.�@�@ ƒjƒ…�[ƒgƒŠƒmçtŽË—¬‘ÌŒvŽZ‚É‚æ‚é�d—Í•ö‰óŒ^’´�V�¯‚ÌŒ¤‹†
�Z‹gŒõ‰î
�æ‹ì“I‰ÈŠwŒvŽZ‚ÉŠÖ‚·‚éƒtƒH�[ƒ‰ƒ€2008~“V•¶‰ÈŠw~
‹ã�B‘åŠw�A‚Q‚O‚O‚W�D‚V�D‚Q‚P�|‚Q‚Q�i�u‰‰“ú‚V�D‚Q‚Q�j
�@�@�@�@ �µ‘Ò�u‰‰
86.�@�@ ’´�V�¯”š”‚Ì�”’lƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“‚ÌŒ»�ó‚Æ�«—ˆ‚̉ۑè
�Z‹gŒõ‰î
�@�@�@�@ ŽŸ�¢‘ãƒX�[ƒp�[ƒRƒ“ƒsƒ…�[ƒeƒBƒ“ƒO�EƒVƒ“ƒ|ƒWƒEƒ€‚Q‚O‚O‚W
�@�@�@�@ •ª‰È‰ï�uŽŸ�¢‘ãƒXƒpƒRƒ“‚Å•¨Ž¿‚ƉF’ˆ‚Ì�i‰»‚ð’T‚é�v
�@�@�@�@ “Œ‹ž“s�ç‘ã“c‹æŠÛ‚Ì“àMY PLAZA�A‚Q‚O‚O‚W�D‚X�D‚P‚V
�@�@�@�@ ˆË—Š�u‰‰
87.�@�@ ƒuƒ‰ƒbƒNƒz�[ƒ‹Œ`�¬Žž‚É•ú�o‚³‚ê‚éƒjƒ…�[ƒgƒŠƒm‚Ì“Á’¥‚Æ�ó‘Ô•û’öŽ®
�@�@�@�@ �Z‹gŒõ‰î�A’†—¢Œ’ˆê˜Y�A—é–Ø‰p”V�AŽR“c�͈ê
�@�@�@�@ “ú–{•¨—�Šw‰ï�AŽRŒ`‘åŠw�A‚Q‚O‚O‚W�D‚X�D‚Q‚O�|‚Q‚R�i�u‰‰“ú‚X�D‚Q‚P�j
88.�@�@ ‹…‘Î�̃Vƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“‚ÌŒ»�ó
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ �d—Í•ö‰óŒ^’´�V�¯‚Æ�‚ƒGƒlƒ‹ƒM�[“V•¶ŠwŒ¤‹†‰ï
�@�@�@�@ “Œ‹ž‘åŠw�A‚Q‚O‚O‚X�D‚Q�D‚Q�|‚S�i�u‰‰“ú‚Q�D‚Q�j
�@�@�@�@ �µ‘Ò�u‰‰
89.�@�@ �d—Í•ö‰óŒ^’´�V�¯�Eƒjƒ…�[ƒgƒŠƒm•ú�o‚Æ�ó‘Ô•û’öŽ®
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ Œ¤‹†‰ï�uRƒvƒ�ƒZƒXŒ³‘f‘g�¬‚Ì“��‡“I—�‰ð―‰F’ˆ‚Ì’†‚Ì•sˆÀ’èŠj•¨—�―�v
�@�@�@�@ ’}”g‘åŠw�A‚Q‚O‚O‚X�D‚R�D‚X�|‚P‚O�i�u‰‰“ú‚R�D‚P‚O�j
�@�@�@�@ �µ‘Ò�u‰‰
90.�@�@ ‚RŽŸŒ³ƒjƒ…�[ƒgƒŠƒmçtŽË—A‘—ŒvŽZ‚ÖŒü‚¯‚Ä
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ Šî”Õ‚rŒ¤‹†‰ï�u’´�V�¯‚Ì”š”‹@�\‚ƃKƒ“ƒ}�üƒo�[ƒXƒgŒ¹ƒGƒ“ƒWƒ“‚Ì“�ˆê“I‰ð–¾�v
�@�@�@�@ �‘—§“V•¶‘ä�A‚Q‚O‚P‚O.‚P.‚U�|‚V�i�u‰‰“ú‚P�D‚U�j
91.�@�@ ’´�V�¯‚É‚¨‚¯‚é�‚‰·�‚–§“x•¨Ž¿‚ƃjƒ…�[ƒgƒŠƒm
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ “ú–{•¨—�Šw‰ï�A‰ªŽR‘åŠw�A‚Q‚O‚P‚O�D‚R. ‚Q‚O�|‚Q‚R�i�u‰‰“ú‚R�D‚Q‚Q�j
�@�@�@�@ ƒVƒ“ƒ|ƒWƒEƒ€�u�‚–§“x�¯‚Ì’†‚̃XƒgƒŒƒ“ƒWƒlƒX�v
�@�@�@�@ ˆË—Š�u‰‰
92.�@�@ ’´�V�¯”𔂯Šj•¨—��Eƒjƒ…�[ƒgƒŠƒm�F‚RŽŸŒ³ƒjƒ…�[ƒgƒŠƒmçtŽË—A‘—ŒvŽZƒR�[ƒh‚ÌŠJ”
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‘æ2‰ñ�uƒNƒH�[ƒN—ÍŠw�EŒ´ŽqŠj�\‘¢‚ÉŠî‚”š”“I“V‘ÌŒ»�Û‚ÆŒ³‘f�‡�¬�vŒ¤‹†‰ï
�@�@�@�@ “Œ‹ž‘åŠw�A‚Q‚O‚P‚O�D‚T�D‚R‚P�|‚U�D‚P�i�u‰‰“ú‚T�D‚R‚P�j
93.�@�@ ‚RŽŸŒ³ƒjƒ…�[ƒgƒŠƒmçtŽË—A‘—ŒvŽZƒR�[ƒh‚ÌŠJ”
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ Œ¤‹†‰ï�uŽŸ�¢‘ãƒX�[ƒp�[ƒRƒ“ƒsƒ…�[ƒ^�[‚É‚æ‚锚”“I“V‘ÌŒ»�Û‚ÌŒ¤‹†�v
�@�@�@�@ —®‹…‘åŠw�A‚Q‚O‚P‚P.‚P.‚R‚P�|‚Q.‚Q�i�u‰‰“ú‚Q.‚P�j
94.�@�@ ’´�V�¯ƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“‚Ì�ó‘Ô•û’öŽ®�FŒ»�󂯉e‹¿
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ �m‰ÈƒZƒ“ƒ^�[ƒ~ƒjƒ��[ƒNƒVƒ‡ƒbƒv�u’†�«Žq�¯‚ÌŠj•¨Ž¿�v
�@�@�@�@ —�‰»ŠwŒ¤‹†�Š�A˜aŒõŽs�A‚Q‚O‚P‚P.‚X.‚P‚R
95.�@�@ ‚RŽŸŒ³ƒjƒ…�[ƒgƒŠƒmçtŽË—A‘—ŒvŽZƒR�[ƒh‚É‚æ‚é’´�V�¯ƒRƒA‚ÌŒ¤‹†
�@�@�@�@ �Z‹gŒõ‰î�AŽR“c�͈ê
�@�@�@�@ “ú–{•¨—�Šw‰ï�A�O‘O‘åŠw�A‚Q‚O‚P‚P�D‚X�D‚P‚U�|‚P‚X�i�u‰‰“ú‚X�D‚P‚U�j
96.�@�@ ƒjƒ…�[ƒgƒŠƒmçtŽË—¬‘ÌŒvŽZ‚Æ�ó‘Ô•û’öŽ®
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ Œ¤‹†‰ï�u‘fŠj‰F—Z�‡‚É‚æ‚éŒvŽZŠî‘b•¨—�Šw‚Ì�i“W - ƒ~ƒNƒ�‚ƃ}ƒNƒ�‚Ì‚©‚¯‹´‚Ì�\’z -�v
�@�@�@�@ �‡Š½‚Ì‹½�AŽO�dŒ§Žu–€Žs�A‚Q‚O‚P‚P�D‚P‚Q�D‚R�|‚T�i�u‰‰“ú‚P‚Q�D‚S�j
97.�@�@ ’´�V�¯‚É‚¨‚¯‚éƒjƒ…�[ƒgƒŠƒmçtŽË—A‘—‚Æ�ó‘Ô•û’öŽ®
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ Œ¤‹†‰ï�u’´�V�¯”𔂯�”’lƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“�v
�@�@�@�@ ‹ž“s‘åŠwŠî‘b•¨—�ŠwŒ¤‹†�Š
�@�@�@�@ ‚Q‚O‚P‚P�D‚P‚Q�D‚Q‚U~‚Q‚W�i�u‰‰“ú‚P‚Q�D‚Q‚V�j
�@�@�@�@ �µ‘Ò�u‰‰
98.�@�@ ’´�V�¯”š”‚Ì‘å‹K–Í�”’lƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“‚ÆŒ´ŽqŠj•¨—�
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ �u‘å‹K–ÍŒvŽZ‚É‚æ‚錴ŽqŠjŒ¤‹†‚Ì“WŠJ-ŠjŽq‘½‘ÌŒn‚ð’†�S‚É-�v
�@�@�@�@ HPCI�í—ªƒvƒ�ƒOƒ‰ƒ€•ª–ì5Œ¤‹†‰ï
�@�@�@�@ —�‰»ŠwŒ¤‹†�Š�A‚Q‚O‚P‚Q�D‚P�D‚Q‚S�`‚Q‚T�i�u‰‰“ú‚P�D‚Q‚S�j
�@�@�@�@ �µ‘Ò�u‰‰
99.�@�@ ‚RŽŸŒ³’´�V�¯ƒRƒA‚É‚¨‚¯‚éƒjƒ…�[ƒgƒŠƒmçtŽË—A‘—
�@�@�@�@ �Z‹gŒõ‰î�AŽR“c�͈ê
�@�@�@�@ “ú–{•¨—�Šw‰ï�AŠÖ�¼Šw‰@‘åŠw�A‚Q‚O‚P‚Q�D‚R�D‚Q‚S~‚Q‚V�i�u‰‰“ú‚R�D‚Q‚S�j
100.�@ ’´�V�¯”š”‚É‚¨‚¯‚é�ó‘Ô•û’öŽ®ƒe�[ƒuƒ‹‚ÌŒ»�ó‚Æ‰Û‘è
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ŠîŒ¤Œ¤‹†‰ï�uƒnƒhƒ�ƒ“•¨Ž¿‚Ì�”‘Š‚Æ�ó‘Ô•û’öŽ®�[’†�«Žq�¯‚ÌŠÏ‘ª‚É�Ƃ炵‚Ä�[�v
�@�@�@�@ ‹ž“s‘åŠwŠî‘b•¨—�ŠwŒ¤‹†�Š
�@�@�@�@ ‚Q‚O‚P‚Q�D‚W�D‚R‚O�`‚X�D‚P�i�u‰‰“ú‚W�D‚R‚O�j
101.�@ ’´�V�¯”š”‚É‚¨‚¯‚éŠj•¨Ž¿‚Æ�ó‘Ô•û’öŽ®
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ �VŠw�p—̈挤‹†�uŽÀŒ±‚ÆŠÏ‘ª‚Å‰ð‚«–¾‚©‚·’†�«Žq�¯‚ÌŠj•¨Ž¿�vƒLƒbƒNƒIƒtƒVƒ“ƒ|ƒWƒEƒ€
�@�@�@�@ —�‰»ŠwŒ¤‹†�Š
�@�@�@�@ ‚Q‚O‚P‚Q�D‚P‚O�D‚Q‚U�`‚Q‚V�i�u‰‰“ú‚P‚O�D‚Q‚V�j
�@�@�@�@ �µ‘Ò�u‰‰
102.�@ ’´�V�¯‚É‚¨‚¯‚é‚RŽŸŒ³ƒjƒ…�[ƒgƒŠƒmçtŽË—A‘—ƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‘æ25‰ñ—�˜_�§ƒVƒ“ƒ|ƒWƒEƒ€�uŒvŽZ‰F’ˆ•¨—�Šw‚Ì�V“WŠJ�v
�@�@�@�@ ‚Q‚O‚P‚Q�D‚P‚Q�D‚Q‚Q�`‚Q‚S�i�u‰‰“ú‚P‚Q�D‚Q‚S�j
�@�@�@�@ ‚‚‚Î�‘�Û‰ï‹c�ê�A‚‚‚ÎŽs
103.�@ ƒjƒ…�[ƒgƒŠƒm—A‘—•û’öŽ®‚Ì�”’l‰ð–@
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‰F’ˆŽ¥‹C—¬‘Ì�Eƒvƒ‰ƒYƒ}ƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“ƒ��[ƒNƒVƒ‡ƒbƒvWS2013
�@�@�@�@ ‚Q‚O‚P‚R�D‚Q�D‚P‚W�`‚P‚X�i�u‰‰“ú‚Q�D‚P‚W�j
�@�@�@�@ �ç—t‘åŠw
�@�@�@�@ �µ‘Ò�u‰‰
104.�@ ‚UŽŸŒ³ƒ{ƒ‹ƒcƒ}ƒ“•û’öŽ®‚É‚æ‚é’´�V�¯‚ł̃jƒ…�[ƒgƒŠƒmçtŽË—A‘—
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ HPCI�í—ªƒvƒ�ƒOƒ‰ƒ€•ª–ì5�u•¨Ž¿‚ƉF’ˆ‚Ì‹NŒ¹‚Æ�\‘¢�v‘S‘̃Vƒ“ƒ|ƒWƒEƒ€
�@�@�@�@ ‚Q‚O‚P‚R�D‚R�D‚T~‚R�D‚U�i�u‰‰“ú‚R�D‚U�j
�@�@�@�@ •xŽmƒ\ƒtƒgƒAƒLƒoƒvƒ‰ƒU 6ŠKƒZƒ~ƒi�[ƒ‹�[ƒ€1
105.�@ �d—Í•ö‰óŒ^’´�V�¯‚É‚¨‚¯‚é3ŽŸŒ³ƒjƒ…�[ƒgƒŠƒmçtŽË—A‘—ŒvŽZ
�@�@�@�@ �Z‹gŒõ‰î�C’·‘q—mŽ÷�CŽR“c�͈ê�C�¼ŒÃ‰h•v
�@�@�@�@ “ú–{•¨—�Šw‰ï�A�L“‡‘åŠw�A‚Q‚O‚P‚R�D‚R�D‚Q‚U�`‚Q‚X�i�u‰‰“ú‚R�D‚Q‚X�j
Žó�Ü
1.�@�@�@ David Sarnoff RCA Scholarship Žó�Ü
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ “Œ‹ž“s—§‘åŠw�A‚P‚X‚W‚V.‚S
2.�@�@�@ David Sarnoff RCA Fellowship Žó�Ü
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ “Œ‹ž“s—§‘åŠw�A‚P‚X‚W‚W.‚S
3.�@�@�@ “úŒoƒTƒCƒGƒ“ƒX‘æ‚R‰ñ
Computer Visualization Contest ‰À�ì“ü‘I
�@�@�@�@ ƒnƒCƒ[ƒ“ƒxƒ‹ƒN‚Ì’J‚Æ�dŒ³‘f�‡�¬
�@�@�@�@ ŽO‰Y‹Ï�A‹k�F”Ž�A�Z‹gŒõ‰î�A–]ŒŽ—DŽq�A�^�è�rˆê
�@�@�@�@ Œf�Ú‹LŽ–�F“úŒoƒTƒCƒGƒ“ƒX‚P‚X‚X‚V”N‚P‚QŒŽ�†
4.�@�@�@ The third prize in the best poster competition at the
international symposium
�@�@�@�@ on Nuclei in the Cosmos XI, Heidelberg, 19-23 July 2010.
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ for poster presentation:
�@�@�@�@ Neutrino bursts from failed supernovae as a promising target of
neutrino astronomy
�@�@�@�@ (Certificate and 100 Euro in cash)
‚»‚Ì‘¼�iŒ¤‹†•ñ��“™�F—�Œ¤�j
1.�@�@�@ Impact of unstable nuclei on neutron stars
and supernovae,
�@�@�@�@ K. Sumiyoshi, D. Hirata, H. Suzuki, Y.
Sugahara, H. Toki and I. Tanihata,
�@�@�@�@ RIKEN Review 10 (1995) 17.
2.�@�@�@ Parallelization of the direct solution of
large block-tridiagonal matrix system
�@�@�@�@ for problems of radiative transfer,
�@�@�@�@ K. Sumiyoshi and T. Ebisuzaki
�@�@�@�@ High Performance Computing in RIKEN 1995, 1
(1996) 161-163.
3.�@�@�@ A systematic study of even-even nuclei up to
the drip lines in terms of the relativistic mean field theory,
�@�@�@�@ K. Sumiyoshi, D. Hirata, I. Tanihata, Y.
Sugahara and H. Toki,
�@�@�@�@ High Performance Computing in RIKEN 1995, 1
(1996) 165-168.
4.�@�@�@ The radiative transfer in neutron star
atmospheres with super-strong magnetic field,
�@�@�@�@ O. Nishimura, K. Sumiyoshi and T.
Ebisuzaki,
�@�@�@�@ High Performance Computing in RIKEN 1995, 1
(1996) 169-171.
5.�@�@�@ A systematic study of the ground state properties
of even-even nuclei up to the drip lines
�@�@�@�@ within the relativistic mean field
framework,
�@�@�@�@ K. Sumiyoshi, D. Hirata, I. Tanihata, Y.
Sugahara and H. Toki,
�@�@�@�@ High Performance Computing in RIKEN 1995, 1
(1996) 249-251.
6.�@�@�@ Systematic study of unstable nuclei in the
relativistic mean field framework
�@�@�@�@ on the RIKEN supercomputer VPP500,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ RIKEN Review 14 (1996) 25-26.
7.�@�@�@ The radiative transfer in soft gamma
repeaters with a super-strong magnetic field,
�@�@�@�@ O. Nishimura, K. Sumiyoshi and T.
Ebisuzaki,
�@�@�@�@ RIKEN Review 14 (1996) 37-38.
8.�@�@�@ The radiative transfer problems in SGRs
models with super-strong magnetic field,
�@�@�@�@ O. Nishimura, K. Sumiyoshi and T.
Ebisuzaki,
�@�@�@�@ High Performance Computing in RIKEN 1996, 2
(1997) 135-137.
9.�@�@�@ Study of Ge, Kr and Se isotopes using the
relativistic mean field approach
�@�@�@�@ under the triaxial symmetry assumption,
�@�@�@�@ D. Hirata, K. Sumiyoshi, I. Tanihata and H.
Toki,
�@�@�@�@ High Performance Computing in RIKEN 1996, 2
(1997) 223-225.
10.�@�@ Ground state properties of unstable nuclei in
the relativistic mean field framework,
�@�@�@�@ K. Sumiyoshi, D. Hirata, S. Sugimoto, Y.
Sugahara, I. Tanihata and H. Toki,
�@�@�@�@ RIKEN Review 19 (1998) 92-94.
11.�@�@ Systematic study of triaxial deformation in
the relativistic mean field theory,
�@�@�@�@ S. Sugimoto, K. Sumiyoshi and H. Toki,
�@�@�@�@ RIKEN Review 25 (1999) 7-8.
12.�@�@ Hydrodynamical simulation of neutrino-driven
wind for r-process,
�@�@�@�@ K. Sumiyoshi, H. Shen, K. Oyamatsu, H.
Toki, H. Suzuki and S. Yamada,
�@�@�@�@ RIKEN Review 25 (1999) 9.
13.�@�@ Relativistic theory for nuclei and supernova,
�@�@�@�@ H. Toki, K. Sumiyoshi, D. Hirata, H. Shen
and I. Tanihata,
�@�@�@�@ RIKEN Review 26 (2000) 17-22.
14.�@�@ Unstable nuclei and EOS table for supernova
explosion and r-process in relativistic many body approach,
�@�@�@�@ K. Sumiyoshi, H. Shen, K. Oyamatsu, M.
Terasawa, H. Suzuki, S. Yamada and H. Toki,
�@�@�@�@ RIKEN Review 26 (2000) 133-135.
15.�@�@ Can we determine the equation of state of
asymmetric nuclear matter using unstable nuclei?
�@�@�@�@ K. Oyamatsu, I. Tanihata, Y. Sugahara, H.
Toki and K. Sumiyoshi,
�@�@�@�@ RIKEN Review 26 (2000) 136-138.
‚»‚Ì‘¼�iŒ¤‹†•ñ��“™�F�À’Ã�‚�ê�j
1.�@�@�@ Hydrodynamical study of supernovae and r-process,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ �À’Ã�H‹Æ�‚“™�ê–åŠw�ZŒ¤‹†•ñ��
35 (2001) 193-198.
2.�@�@�@ ’´�V�¯”š”‚É‚¨‚¯‚é‚’ƒvƒ�ƒZƒXŒ³‘f�‡�¬
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ �À’Ã�H‹Æ�‚“™�ê–åŠw�ZŒ¤‹†•ñ��
36 (2002) 161-164.
3.�@�@�@ ‚’ƒvƒ�ƒZƒXŒ³‘f‘g�¬”äƒpƒ^�[ƒ“‚Ì‹NŒ¹
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ �À’Ã�H‹Æ�‚“™�ê–åŠw�ZŒ¤‹†•ñ��
37 (2003) 211-214.
4.�@�@�@ �uƒfƒ‚ŽÀŒ±‚ÅŠy‚µ‚Þ•¨—��v‚ÌŒ»�ó‚Æ‰Û‘è
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ �À’Ã�H‹Æ�‚“™�ê–åŠw�ZŒ¤‹†•ñ��
38 (2004) 181-188.
5.�@�@�@ �V“ü�¶‚ɑ΂µ‚Ä�s‚Á‚½•¨—�Šw—Í—\”õ�f’f
�@�@�@�@ �ŸŽR’q’j�E�Z‹gŒõ‰î
�@�@�@�@ �À’Ã�H‹Æ�‚“™�ê–åŠw�ZŒ¤‹†•ñ��
39 (2005) 159-166.
6.�@�@�@ Study of supernova explosions by numerical simulations of neutrino-transfer
hydrodynamics,
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ �À’Ã�H‹Æ�‚“™�ê–åŠw�ZŒ¤‹†•ñ��
39 (2005) 159-166.
7.�@�@�@ �‚�ê‚É‚¨‚¯‚镨—�–â‘艉�K‚Ö‚ÌŽæ‚è‘g‚Ý
�@�@�@�@ �Z‹gŒõ‰î�E�ŸŽR’q’j
�@�@�@�@ �À’Ã�H‹Æ�‚“™�ê–åŠw�ZŒ¤‹†•ñ��
40 (2006) 399-404.
8.
—\”õ�f’fƒeƒXƒg‚É‚æ‚镨—�’mޝ‚ÌŒo”N•ω»‚Ì•ª�Í
�Z‹gŒõ‰î�E�ŸŽR’q’j
�@�@�@�@ �À’Ã�H‹Æ�‚“™�ê–åŠw�ZŒ¤‹†•ñ��
41 (2007) 155-158.
9.�@�@�@ ’´�V�¯”š”ƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“‚É‚¨‚¯‚é�ó‘Ô•û’öŽ®ƒf�[ƒ^ƒe�[ƒuƒ‹‚Ì”“W
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ �À’Ã�H‹Æ�‚“™�ê–åŠw�ZŒ¤‹†•ñ��
42 (2008) 309-312.
10.�@�@ ‘县—Ê�¯‚©‚ç‚̃uƒ‰ƒbƒNƒz�[ƒ‹Œ`�¬‚ƃjƒ…�[ƒgƒŠƒm•ú�o
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ �À’Ã�H‹Æ�‚“™�ê–åŠw�ZŒ¤‹†•ñ��
43 (2009) 307-310.
11.�@�@ �À’Ã�‚�ê‚P”N�¶‚ÌŠw�K�ó‹µ’²�¸‚ÆŠw”N‰ï‚É‚æ‚éŠw�KŽw“±
�@�@�@�@ �²“¡�½�A�Z‹gŒõ‰î�A”\“o˜H�ƒŽq�AŽí‘º�r‰î�A‹î‰À–¾
�@�@�@�@ •½�¬‚Q‚P”N“x�‚�ꋳˆç�u‰‰˜_•¶�W�A‚Q‚O‚O‚X”N‚WŒŽ�App. 261-264
12.�@�@ �‚�ê‚P”N“üŠwŽž‚Ì•¨—�—\”õ�f’fƒeƒXƒg‚Ì”NŽŸ�„ˆÚ
�@�@�@�@ �Z‹gŒõ‰î�A‹î‰À–¾�A�ŸŽR’q’j
�@�@�@�@ �À’Ã�H‹Æ�‚“™�ê–åŠw�ZŒ¤‹†•ñ�� (2011)
‚»‚Ì‘¼�iŒ¤‹†•ñ��“™�F‚»‚Ì‘¼�j
1.�@�@�@ A systematic study of even-even nuclei in
the nuclear chart by the relativistic mean field theory,
�@�@�@�@ K. Sumiyoshi, D. Hirata, I. Tanihata and Y.
Sugahara,
�@�@�@�@ in Proceedings of the First Internet
Symposium on Nuclear Data,
�@�@�@�@ JAERI-Conf 97-004 (1996) 187-192.
2.�@�@�@ ’´�V�¯”š”�E‚’ƒvƒ�ƒZƒX‚ÉŒü‚¯‚½‘Š‘Î˜_“I�ó‘Ô•û’öŽ®ƒf�[ƒ^ƒe�[ƒuƒ‹
�@�@�@�@ �Z‹gŒõ‰î�AHong Shen�A�e�¼˜a�_�A“yŠò”Ž�A—é–Ø‰p”V�AŽR“c�͈ê
�@�@�@�@ JAERI--Conf 99-008 (1999) 198-202.
3.�@�@�@ Supernova and r-process simulations with relativistic EOS table,
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ JAERI--Conf 2000-011 (2000) 134-138.
4.�@�@�@ ’´�V�¯”š”‚É‚¨‚¯‚é‚’ƒvƒ�ƒZƒXŒ³‘f�‡�¬
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ JAERI--Conf 2001-012 (2001) 30-34.
5.�@�@�@ ’´�V�¯”š”�E‚’ƒvƒ�ƒZƒXŒ¤‹†‚Ì�ŋ߂Ì�i“W
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ JAERI--Conf 2002-011 (2002) 19-23
‰ÈŒ¤”ï“™
1.�@�@�@ •¶•”‰ÈŠw�È�E‰ÈŒ¤”ïŠî”ÕŒ¤‹†‚b
�@�@�@�@ �u”š”“I“V‘ÌŒ»�Û‚É‚¨‚¯‚é•úŽË�«�dŒ³‘f�‡�¬‚ƉF’ˆ�E‹â‰Í”N—î�v
�@�@�@�@ Œ¤‹†•ª’SŽÒ�iŒ¤‹†‘ã•\ŽÒ�FŠ�–ì•q‹M�j
�@�@�@�@ •½�¬‚P‚R”N�`‚P‚T”N“x
2.�@�@�@ •¶•”‰ÈŠw�È�E‰ÈŒ¤”ï“Á’è—̈挤‹†‚`
�@�@�@�@ �u’´�V�¯ƒjƒ…�[ƒgƒŠƒm�E�dŒ³‘f�‡�¬‚ƃjƒ…�[ƒgƒŠƒm�U“®�v
�@�@�@�@ Œ¤‹†•ª’SŽÒ�iŒ¤‹†‘ã•\ŽÒ�F—é–Ø‰p”V�j
�@�@�@�@ •½�¬‚P‚Q”N�`‚P‚R”N“x
3.�@�@�@ •¶•”‰ÈŠw�È�E‰ÈŒ¤”ï�§—㌤‹†‚`
�@�@�@�@ �u’´�V�¯”š”ƒCƒxƒ“ƒg‚É‚¨‚¯‚é‚’ƒvƒ�ƒZƒXŒ³‘f�‡�¬ƒpƒ^�[ƒ“‚ÌŒ¤‹†�v
�@�@�@�@ Œ¤‹†‘ã•\ŽÒ
�@�@�@�@ •½�¬‚P‚R”N�`‚P‚S”N“x
�@�@�@�@ ‰Û‘è”Ô�†�F13740165
�@�@�@�@ ‘�Šz�F1,700�ç‰~
4.�@�@�@ •¶•”‰ÈŠw�È�E‰ÈŒ¤”ï�§—㌤‹†‚`
�@�@�@�@ �u•sˆÀ’èŠjƒf�[ƒ^�Eƒjƒ…�[ƒgƒŠƒm—A‘——¬‘ÌŒvŽZ‚É‚æ‚é’´�V�¯”š”ƒ�ƒJƒjƒYƒ€‚̉ð–¾�v
�@�@�@�@ Œ¤‹†‘ã•\ŽÒ
�@�@�@�@ •½�¬‚P‚T”N“x�`‚P‚V”N“x
�@�@�@�@ ‰Û‘è”Ô�†�F15740160
�@�@�@�@ ‘�Šz�F2,200�ç‰~
5.�@�@�@ •¶•”‰ÈŠw�È�E‰ÈŒ¤”ïŠî”ÕŒ¤‹†C
�@�@�@�@ �u�dƒCƒIƒ“‹y‚уnƒCƒp�[Šj”½‰ž‚ÉŠî‚Â’´�V�¯•¨Ž¿‚Ì�ó‘Ô•û’öŽ®‚ÆŠjŽí•ª•zƒe�[ƒuƒ‹‚Ì�\’z�v
�@�@�@�@ Œ¤‹†•ª’SŽÒ�iŒ¤‹†‘ã•\ŽÒ�F‘å�¼–¾�j
�@�@�@�@ •½�¬‚P‚T”N“x�`‚P‚W”N“x
�@�@�@�@ ‰Û‘è”Ô�†�F15540243
6.�@�@�@ •¶•”‰ÈŠw�È�E‰ÈŒ¤”ïŠî”ÕŒ¤‹†C�iˆê”Ê�j
�@�@�@�@ �u‘县—Ê�¯�d—Í•ö‰ó‚É‚æ‚é“V‘ÌŒ»�ۂ̋ɌÀ•¨Ž¿‰ÈŠw‚ÉŠî‚¢‚½Œn“�“I‰ð–¾�v
�@�@�@�@ Œ¤‹†‘ã•\ŽÒ
�@�@�@�@ •½�¬‚P‚W”N“x�`‚Q‚P”N“x
�@�@�@�@ ‰Û‘è”Ô�†�F18540295
�@�@�@�@ ‘�Šz�F3,400�ç‰~
7.�@�@�@ •¶•”‰ÈŠw�È�E‰ÈŒ¤”ïŠî”ÕŒ¤‹†C�iˆê”Ê�j
�@�@�@�@ �u’´�V�¯”š”ŒvŽZ‚Ì‚½‚߂̌»ŽÀ“IŠe—͂Ɋj•¨Ž¿�ó‘Ô•û’öŽ®‚Ì�ì�¬�v
�@�@�@�@ Œ¤‹†•ª’SŽÒ�iŒ¤‹†‘ã•\ŽÒ�F‘é–ì�³—˜�j
�@�@�@�@ •½�¬‚P‚W”N“x�`‚Q‚O”N“x
�@�@�@�@ ‰Û‘è”Ô�†�F18540291
8.�@�@�@ •¶•”‰ÈŠw�È�E‰ÈŒ¤”ïŠî”ÕŒ¤‹†C�iˆê”Ê�j
�@�@�@�@ �uŒ´ŽqŠj�Eƒnƒhƒ�ƒ“�EƒNƒH�[ƒN‚Ì‚RŠK‘w�ó‘Ô•û’öŽ®‚ƃRƒ“ƒpƒNƒg“V‘ÌŒ»�Û�v
�@�@�@�@ Œ¤‹†•ª’SŽÒ�iŒ¤‹†‘ã•\ŽÒ�F‘å�¼–¾�j
�@�@�@�@ •½�¬‚P‚X”N“x�`‚Q‚P”N“x
�@�@�@�@ ‰Û‘è”Ô�†�F19540252
9.�@�@�@ •¶•”‰ÈŠw�È�E�VŠw�p—̈挤‹†
�@�@�@�@ �u‘fŠj‰F’ˆ—Z�‡‚É‚æ‚éŒvŽZ‰ÈŠw‚ÉŠî‚¢‚½�d‘w“I•¨Ž¿�\‘¢‚̉ð–¾�v—̈æ‘ã•\�F�–Ø�T–ç
�@�@�@�@ Œv‰æŒ¤‹†�uƒNƒH�[ƒN—ÍŠw�EŒ´ŽqŠj�\‘¢‚ÉŠî‚”š”“I“V‘ÌŒ»�Û‚ÆŒ³‘f�‡�¬�v
�@�@�@�@ Œ¤‹†•ª’SŽÒ�iŒ¤‹†‘ã•\ŽÒ�F—é–Ø‰p”V�j
�@�@�@�@ •½�¬‚Q‚O”N“x�`‚Q‚S”N“x
�@�@�@�@ ‰Û‘è”Ô�†�F20105004
�@�@�@�@ ‘�Šz�F6,600�ç‰~�i•ª’S‘�Šz�F•½�¬‚Q‚R”N“x‚܂ŎÀ�Ñ�j�i8,600�ç‰~Œ©�ž‚Ý�j
10.�@�@ •¶•”‰ÈŠw�È�E‰ÈŒ¤”ïŠî”ÕŒ¤‹†C�iˆê”Ê�j
�@�@�@�@ �u‘½ŽŸŒ³ƒjƒ…�[ƒgƒŠƒmçtŽË—¬‘ÌŒvŽZƒR�[ƒh‚É‚æ‚é’´�V�¯”š”ƒ�ƒJƒjƒYƒ€‚ÌŒ¤‹†�v
�@�@�@�@ Œ¤‹†‘ã•\ŽÒ
�@�@�@�@ •½�¬‚Q‚Q”N“x�`‚Q‚U”N“x
�@�@�@�@ ‰Û‘è”Ô�†�F22540296
�@�@�@�@ ‘�Šz�F3,100�ç‰~
11.�@�@ •¶•”‰ÈŠw�È�E‰ÈŒ¤”ïŠî”ÕŒ¤‹†A�iˆê”Ê�j
�@�@�@�@ �u‘县—Ê�¯‚Ì�i‰»‚É‚¨‚¯‚é�d—Í•ö‰óŒ^’´�V�¯‚Ì‘��‡“IŒ¤‹†�v
�@�@�@�@ Œ¤‹†•ª’SŽÒ
�@�@�@�@ •½�¬‚Q‚S”N“x�`‚Q‚V”N“x
�@�@�@�@ ‰Û‘è”Ô�†�F24244036
�@�@�@�@ ‘�Šz�F1,000�ç‰~�i•ª’S‘�Šz�F•½�¬‚Q‚S”N“x‚܂ŎÀ�Ñ�j�i—\’è�j
‰ÈŒ¤”ï“™‰ž•å�ó‹µ
1.�@�@�@ •¶•”‰ÈŠw�È�E“Á’è—̈挤‹†�E�V‹K
�@�@�@�@ �u�dŒ³‘f‚Ì‹NŒ¹‚ƉF’ˆ�i‰»�v—̈æ‘ã•\�F‹v•Û–ì–Î
�@�@�@�@ Œv‰æŒ¤‹†�uŽŸ�¢‘㌳‘f�‡�¬ƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“ƒZƒ“ƒ^�[�vŒ¤‹†‘ã•\ŽÒ
�@�@�@�@ •½�¬‚P‚V”N‰ž•å
2.�@�@�@ •¶•”‰ÈŠw�È�E“Á’è—̈挤‹†�E�V‹K
�@�@�@�@ �u—ÊŽqƒr�[ƒ€‚Å‚³‚®‚é‰F’ˆ�i‰»�v—̈æ‘ã•\�FŠ�–ì•q‹M
�@�@�@�@ Œv‰æŒ¤‹†�uŠjƒf�[ƒ^‚É‚æ‚é�ó‘Ô•û’öŽ®‚ÆŒ´Žn’†�«Žq�¯’a�¶�E�i‰»�vŒ¤‹†‘ã•\ŽÒ
�@�@�@�@ •½�¬‚P‚W”N‰ž•å
Lecture at international summer
school
1.�@�@�@ Supernova Simulations
and the Role of Nuclear Physics
�@�@�@�@ K. Sumiyoshi,
�@�@�@�@ The 5th CNS International Summer School,
�@�@�@�@ the Wako campus of the
Center for Nuclear Study (CNS),
�@�@�@�@ the University of Tokyo,
�@�@�@�@ August, 2006
�@�@�@�@ (Invited Lecture)
�W’†�u‹`
1.�@�@�@ Œ´ŽqŠj—�˜_“Á˜_�u•sˆÀ’茴ŽqŠj‚Æ’´�V�¯”š”�EŒ³‘f�‡�¬�v
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ “Þ—Ç�—Žq‘åŠw—�Šw•”�A‚Q‚O‚O‚R.‚W
2.�@�@�@ ‰F’ˆ•¨—�Šw�E‰F’ˆ˜_ III�u‰F’ˆ�E‹â‰Í�E�¯�Eƒvƒ‰ƒYƒ}“V‘Ì•¨—�Šw‚ÌŠî‘b�v
�@�@�@�@ �‚–§“x“V‘Ì�i’†�«Žq�¯�j�A’´�V�¯”𔂯ƒjƒ…�[ƒgƒŠƒm�A�dŒ³‘f�‡�¬
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ �‘—§“V•¶‘ä�A‚Q‚O‚O‚T�D‚T
�@�@�@�@ ‘��‡Œ¤‹†‘åŠw‰@‘åŠw�A�‘—§“V•¶‘ä�iŽO‘é�A–ì•ÓŽR�Aƒnƒ�ƒC�j�AKEK�A‰F’ˆ‰ÈŠwŒ¤
3.�@�@�@ ‘åŠw‰@“Á•Ê�u‹`�u‘n‘¢�H–[ƒZƒ~ƒi�[�v
�@�@�@�@ �”’lƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“‚Å’T‚é’´�V�¯”š”
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‰ï’ÑåŠw�A‚Q‚O‚O‚U.‚V
4.�@�@�@ —¯Šw�¶ƒR�[ƒX‘åŠw‰@�u‹`
�@�@�@�@ Physics of Core-Collapse Supernovae
�@�@�@�@ ‘å�ã‘åŠw�EG30�‘�Û•¨—�“Á•ʃR�[ƒX�AƒŒ�[ƒU�[ƒGƒlƒ‹ƒM�[ŠwŒ¤‹†ƒZƒ“ƒ^�[�A‚Q‚O‚P‚P.‚V
5.�@�@�@ ƒTƒ}�[ƒXƒN�[ƒ‹�uƒNƒI�[ƒN‚©‚ç’´�V�¯”š”‚Ü‚Å�v
�@�@�@�@ Šj•¨Ž¿�ó‘Ô•û’öŽ®‚ð—p‚¢‚½’´�V�¯”š”ƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“�i�u‹`‚¨‚æ‚ÑŽÀ�K�j
�@�@�@�@ ‹ž“s‘åŠwŠî‘b•¨—�ŠwŒ¤‹†�Š
�@�@�@�@ ‚Q‚O‚P‚P. 8.4-8.8 (‹¤“¯’S“–8.7-8.8)
6.�@�@�@ ƒTƒ}�[ƒXƒN�[ƒ‹�uƒNƒI�[ƒN‚©‚ç’´�V�¯”š”‚Ü‚Å�v
�@�@�@�@ Šj•¨Ž¿�ó‘Ô•û’öŽ®‚ð—p‚¢‚½’´�V�¯”š”ƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“�i�u‹`‚¨‚æ‚ÑŽÀ�K�j
�@�@�@�@ ‹ž“s‘åŠwŠî‘b•¨—�ŠwŒ¤‹†�Š
�@�@�@�@ ‚Q‚O‚P‚Q. 7.27-7.31 (‹¤“¯’S“–7.30-7.31)
ˆË—Š�u‰‰
1.�@�@�@ Œ´ŽqŠj‚©‚ç’´�V�¯ƒVƒ~ƒ…ƒŒ�[ƒVƒ‡ƒ“‚Ö‚Ì“¹‚Ì‚è
�@�@�@�@ �Z‹gŒõ‰î
�@�@�@�@ ‹L”O�u‰‰‰ï�uƒNƒH�[ƒNŠj•¨—�Šw-ƒ~ƒNƒ�‚©‚çƒ}ƒNƒ�‚Ö�v
�@�@�@�@ ‚Q‚O‚P‚O�D‚U�D‚T�A‘å�ã‘åŠw
Œ¤‹†‰ï�¢˜b�l
1.�@�@�@ ‚q‚b‚m‚oƒ��[ƒNƒVƒ‡ƒbƒv�uŒ´ŽqŠj�Eƒnƒhƒ�ƒ“•¨—�‚É‚¨‚¯‚éƒXƒsƒ“‚Ì–£—Í�v
�@�@�@�@ ‘å�ã‘åŠwŠj•¨—�Œ¤‹†ƒZƒ“ƒ^�[
�@�@�@�@ ‚Q‚O‚O‚U.‚Q
2.�@�@�@ RCNP-JAEA Workshop on
Nuclear Photon Science
�@�@�@�@ "Hadron-nuclear
physics probed by photon"
�@�@�@�@ JAEA (Japan Atomic
Energy Agency), Kizu, Kyoto
�@�@�@�@ ‚Q‚O‚O‚U.‚Q
�@�@�@�@ Organizers
3.�@�@�@ RCNPŒ¤‹†‰ï�u’´�V�¯”𔂯ƒjƒ…�[ƒgƒŠƒm�EŒ´ŽqŠj”½‰ž�v
�@�@�@�@ ‘å�ã‘åŠwŠj•¨—�Œ¤‹†ƒZƒ“ƒ^�[(RCNP)
�@�@�@�@ ‚Q‚O‚O‚V.‚R
4.�@�@�@ Numazu Workshop on
Supernova EOS
�@�@�@�@ �À’Ã�‚�ê
�@�@�@�@ ‚Q‚O‚O‚V.‚R
5.�@�@�@ Chiral Symmetry in
Hadron and Nuclear Physics (Chiral07)
�@�@�@�@ Osaka University, Suita,
Osaka, Japan
�@�@�@�@ ‚Q‚O‚O‚V.‚P‚P
�@�@�@�@ Organizers
6.�@�@�@ Numazu Workshop on
Supernova EOS 2008
�@�@�@�@ �À’Ã�‚�ê
�@�@�@�@ ‚Q‚O‚O‚W.‚R
7.�@�@�@ ƒNƒH�[ƒN—ÍŠw�EŒ´ŽqŠj�\‘¢‚ÉŠî‚”š”“I“V‘ÌŒ»�Û‚ÆŒ³‘f�‡�¬
�@�@�@�@ Numazu Workshop 2009
�@�@�@�@ �À’Ã�‚�ê
�@�@�@�@ ‚Q‚O‚O‚X.‚R
8.�@�@�@ New Frontiers in QCD
2010
�@�@�@�@ Exotic Hadron Systems
and Dense Matter
�@�@�@�@ Yukawa Institute for
Theoretical Physics, Kyoto, Japan
�@�@�@�@ ‚Q‚O‚P‚O.‚P�|‚R
�@�@�@�@ Organizing Committee
9.�@�@�@ The 10th. International
Symposium on
�@�@�@�@ Origin of Matter and
Evolution of the Galaxies (OMEG10)
�@�@�@�@ RCNP, Osaka University,
Japan
�@�@�@�@ ‚Q‚O‚P‚O.‚R
�@�@�@�@ Program Advisory
Committee
10.�@�@ The 11th. International
Symposium on
�@�@�@�@ Origin of Matter and
Evolution of the Galaxies (OMEG11)
�@�@�@�@ RIKEN, Japan
�@�@�@�@ ‚Q‚O‚P‚P.‚P‚P
�@�@�@�@ Local Organizing
Committee
11.�@�@ The 8th China-Japan
Joint Nuclear Physics Symposium (CJJNPS2012)
�@�@�@�@ Beijing,
�@�@�@�@ ‚Q‚O‚P‚Q�D‚P‚O
�@�@�@�@ Organizing Committee
12.�@�@ Supernovae and
Gamma-Ray Bursts 2013,
�@�@�@�@ ‚Q‚O‚P‚R�D‚P‚O�|‚P‚P
�@�@�@�@ Yukawa Institute for
Theoretical Physics, Kyoto, Japan
�@�@�@�@ Scientific Organizing Committee
Šw‰ïŠˆ“®
1.�@�@�@ “ú–{•¨—�Šw‰ï‰ïˆõ
�@�@�@�@ ‚P‚X‚W‚X.‚R�`Œ»�Ý
2.�@�@�@ “ú–{“V•¶Šw‰ï‰ïˆõ
�@�@�@�@ ‚Q‚O‚O‚O.‚P‚O�`Œ»�Ý
3.�@�@�@ ‹ž“s‘åŠwŠî‘b•¨—�ŠwŒ¤‹†�Š‹¤“¯—˜—pˆÏˆõ‰ïˆÏˆõ
�@�@�@�@ ‚Q‚O‚O‚V�D‚P�`‚Q‚O‚O‚W�D‚P‚Q
4.�@�@�@ International
Astronomical Union, Member
�@�@�@�@ ‚Q‚O‚P‚Q�D‚X�`
˜_•¶�¸“Ç
�@�@�@�@ Physical Review
�@�@�@�@ Nuclear Physics
�@�@�@�@ Astrophysical Journal
�@�@�@�@ Astronomy and Astrophysics
�@�@�@�@ Publications of Astronomical Society of Japan
�@�@�@�@ Progress of Theoretical Physics
�@�@�@�@ RIKEN Accelerator Reports
ŠwˆÊ˜_•¶
�@�@�@�@ �CŽm˜_•¶
�@�@�@�@ Baryon number density distribution in the QCD phase transition
of the early Universe
�@�@�@�@ “Œ‹ž“s—§‘åŠw�A‚P‚X‚X‚O
�@�@�@�@ ”ŽŽm˜_•¶
�@�@�@�@ Relativistic equation of state of nuclear matter for supernova
explosion and
�@�@�@�@ birth of neutron star
�@�@�@�@ “Œ‹ž“s—§‘åŠw�A‚P‚X‚X‚R
Œ¤‹†—ð
�@�@�@�@ •½�¬Œ³”N‚P‚OŒŽ�`•½�¬Œ³”N‚P‚PŒŽ
�@�@�@�@ ƒAƒ�ƒŠƒJ�EƒŠƒoƒ‚ƒA�‘—§Œ¤‹†�Š�E‹qˆõŒ¤‹†ˆõ
�@�@�@�@ •½�¬‚S”N‚SŒŽ�`•½�¬‚T”N‚RŒŽ
�@�@�@�@ “Œ‹ž“s—§‘åŠw—�Šw•”�E“ú–{Šw�p�U‹»‰ï“Á•ÊŒ¤‹†ˆõ�i‚c‚b‚Q�j
�@�@�@�@ •½�¬‚S”N‚TŒŽ�`•½�¬‚S”N‚UŒŽ
�@�@�@�@ ƒhƒCƒc�Eƒ}ƒCƒ“ƒc‘åŠw�E‹qˆõŒ¤‹†ˆõ
�@�@�@�@ •½�¬‚T”N‚SŒŽ�`•½�¬‚U”N‚RŒŽ
�@�@�@�@ �‚ƒGƒlƒ‹ƒM�[•¨—�ŠwŒ¤‹†�Š�E“ú–{Šw�p�U‹»‰ï“Á•ÊŒ¤‹†ˆõ�i‚o‚c�j
�@�@�@�@ •½�¬‚U”N‚SŒŽ�`•½�¬‚V”N‚RŒŽ
�@�@�@�@ —�‰»ŠwŒ¤‹†�Š�EŠî‘b‰ÈŠw“Á•ÊŒ¤‹†ˆõ
�@�@�@�@ •½�¬‚V”N‚SŒŽ�`•½�¬‚P‚Q”N‚RŒŽ
�@�@�@�@ —�‰»ŠwŒ¤‹†�Š�EŒ¤‹†ˆõ
�@�@�@�@ •½�¬‚W”N‚SŒŽ�`•½�¬‚X”N‚RŒŽ
�@�@�@�@ ƒhƒCƒc�Eƒ}ƒbƒNƒXƒvƒ‰ƒ“ƒN‰F’ˆ•¨—�ŠwŒ¤‹†�Š�Eƒtƒ“ƒ{ƒ‹ƒg�à’c�µãÙŒ¤‹†ˆõ
�@�@�@�@ •½�¬‚W”N‚P‚OŒŽ
�@�@�@�@ ƒXƒyƒCƒ“�EƒoƒŒƒ“ƒVƒA‘åŠw�E‹qˆõŒ¤‹†ˆõ
�@�@�@�@ •½�¬‚P‚Q”N‚SŒŽ�`•½�¬‚P‚R”N‚RŒŽ
�@�@�@�@ �À’Ã�H‹Æ�‚“™�ê–åŠw�Z�E�uŽt
�@�@�@�@ •½�¬‚P‚R”N‚SŒŽ�`•½�¬‚P‚X”N‚RŒŽ
�@�@�@�@ �À’Ã�H‹Æ�‚“™�ê–åŠw�Z�E�•‹³Žö
�@�@�@�@ •½�¬‚P‚V”N‚SŒŽ�`•½�¬‚P‚W”N‚RŒŽ
�@�@�@�@ �‘—§“V•¶‘ä—�˜_Œ¤‹†•”�E‹qˆõ�•‹³Žö
�@�@�@�@ •½�¬‚P‚X”N‚SŒŽ�`•½�¬‚Q‚S”N‚RŒŽ
�@�@�@�@ �À’Ã�H‹Æ�‚“™�ê–åŠw�Z�E�y‹³Žö
�@�@�@�@ •½�¬‚Q‚R”N‚TŒŽ�`•½�¬‚Q‚S”N‚QŒŽ
�@�@�@�@ �‘—§�‚“™�ê–åŠw�Z‹@�\�E“à’nŒ¤‹†ˆõ�§“x
�@�@�@�@ �‚ƒGƒlƒ‹ƒM�[‰Á‘¬ŠíŒ¤‹†‹@�\�E—�˜_ƒZƒ“ƒ^�[
�@�@�@�@ •½�¬‚Q‚S”N‚SŒŽ�`Œ»�Ý
�@�@�@�@ �À’Ã�H‹Æ�‚“™�ê–åŠw�Z�E‹³Žö