Shing Chi Leung
member.ipmu.jp
0000-0002-4972-3803
Kavli IPMU, The University of Tokyo
30 papers found
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Pulsational Pair-instability Supernovae. II. Neutrino Signals from Pulsations and Their Detection by Terrestrial Neutrino Detectors
Electron-capture Supernovae of Super-AGB Stars: Sensitivity on Input Physics
Explosive Nucleosynthesis in Sub-Chandrasekhar-mass White Dwarf Models for Type Ia Supernovae: Dependence on Model Parameters
Pulsational Pair-instability Supernovae. I. Pre-collapse Evolution and Pulsational Mass Ejection
Evolution of ONeMg Core in Super-AGB Stars toward Electron-capture Supernovae: Effects of Updated Electron-capture Rate
Accretion-induced Collapse of Dark Matter Admixed White Dwarfs. I. Formation of Low-mass Neutron Stars
Accretion-induced Collapse of Dark Matter Admixed White Dwarfs. II. Rotation and Gravitational-wave Signals
Electron-capture Rates in 20Ne for a Forbidden Transition to the Ground State of 20F Relevant to the Final Evolution of High-density O–Ne–Mg Cores
Final evolution of super-AGB stars and supernovae triggered by electron capture
Constraints on the chemical enrichment history of the Perseus Cluster of galaxies from high-resolution X-ray spectroscopy
Nucleosynthesis Constraints on the Explosion Mechanism for Type Ia Supernovae
Explosive Nucleosynthesis in Near-Chandrasekhar-mass White Dwarf Models for Type Ia Supernovae: Dependence on Model Parameters
Single Degenerate Models for Type Ia Supernovae: Progenitor’s Evolution and Nucleosynthesis Yields
The collapsar model of gamma ray burst central engine
Gravitational-Wave and Neutrino Signals from Core-Collapse Supernovae with QCD Phase Transition
Neutrino and Gravitational-Wave Signatures of Quark Stars
The Effects of Admixed Dark Matter on Accretion Induced Collapse
Nucleosynthesis of Iron-Peak Elements in Type-Ia Supernovae
Electron Capture Supernovae from Super Asymptotic Giant Branch Stars
Effects of input physics on the collapse condition of the oxygen-neon-magnesium core
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