Recent Progress in Cosmology and Nuclear Astrophysics
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概要
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We propose two cosmological models in order to explain the universal baryon density parameter Ω_bh^2 inferred from different observational data: One is from the Big-Bang nucleosynthesis, and the other is from the cosmic microwave background fluctuations. Our proposed theoretical models are the lepton asymmetric Universe model and the baryon inhomogeneous Big-Bang nucleosynthesis model. In these cosmological models the nuclear processes are similar to those in the r-process nucleosynthesis in gravitational core-collapse supernova explosion. Massive stars ★10M⊙ culminate their evolution by supernova explosions which are presumed to be the most viable candidate site for the r-process nucleosynthesis. Even in the nucleosynthesis of heavy elements, entropy and density in the hot bubble of core-collapse Type II supernovae are so high that nuclear statistical equilibrium favors production of abundant light nuclei. In such explosive circumstances many radioactive light-to-intermediate mass nuclei as well as heavy mass nuclei play the significant roles.
- 理論物理学刊行会の論文
- 2002-12-26
著者
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KAJINO Toshitaka
National Astronomical Observatory
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Kajino Toshitaka
National Astronomical Observatory And Graduate University For Advanced Studies:department Of Astrono
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OTSUKI Kaori
National Astronomical Observatory and Graduate University for Advanced Studies
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ORITO Manabu
Research Laboratory for Nuclear Reactors, Tokyo Institute of Technology
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ORITO Manabu
National Astronomical Observatory, Division of Theoretical Astrophysics
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Orito Manabu
Research Laboratory For Nuclear Reactors Tokyo Institute Of Technology
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Otsuki Kaori
National Astronomical Observatory And Graduate University For Advanced Studies:university Of Notre D
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Otsuki Kaori
National Astronomical Observatory (nao)
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KAJINO Toshitaka
National Astronomical Observatory and Graduate University for Advanced Studies:Department of Astronomy, Graduate School of Science, University of Tokyo:Japan Atomic Energy Research Institute, Advanced Science Research Center
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KAJINO Toshitaka
National Astronomical Observatory, Division of Theoretical Astrophysics
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OTSUKI Kaori
National Astronomical Observatory and Graduate University for Advanced Studies:University of Notre Dame, Department of Physics and Center for Astrophysics
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OTSUKI Kaori
National Astronomical Observatory, Division of Theoretical Astrophysics
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- An Abundance Study in the Hg-Mn Star 46 Aquilae (HD 186122) with the SUBARU/HDS^1
- Fusion Reactions in Supernovae and the Early Universe
- Recent Progress in Cosmology and Nuclear Astrophysics
- Pion-Nucleus Scattering in the GeV Region : Condensed Matter and Statistical Physics
- Hydrodynamical Study of Neutrino-Driven Wind as an r-Process Site
- Neutrino Induced Reactions with the Nuclei in Core Collapsing Supernovae(YKIS2011 Papers,Frontier Issues in Physics of Exotic Nuclei)
- Gamow-Teller Strengths in Ni Isotopes and Nuclear Weak Processes(YKIS2011 papers, Frontier Issues in Physics of Exotic Nuclei)
- Neutrino Induced Reactions with the Nuclei in Core Collapsing Supernovae
- Gamow-Teller Strengths in Ni Isotopes and Nuclear Weak Processes