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Supernovae, Neutron Star Physics and Nucleosynthesis

About Supernovae, Neutron Star Physics and Nucleosynthesis

This book deals with the interdisciplinary areas of nuclear physics, supernovae and neutron star physics. It addresses the physics and astrophysics of the spectacular supernova explosions, starting with the collapse of massive stars and ending with the birth of neutron stars or black holes. Recent progress in the understanding of core collapse supernova (CCSN) and observational aspects of future detections of neutrinos from CCSN explosions are discussed. The other main focus in this text is the novel phases of dense nuclear matter, its compositions and equation of state (EoS) from low to very high baryon density relevant to supernovae and neutron stars. The multi-messenger astrophysics of binary neutron star merger GW170817 and its relation to EoS through tidal deformability are also presented in detail. The synthesis of elements heavier than iron in the supernova and neutron star environment by the rapid (r)-process are treated here with special emphasis on the nucleosynthesis in theejected material from GW170817. This monograph is written for graduate students and researchers in the field of nuclear astrophysics.

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  • Language:
  • English
  • ISBN:
  • 9783030951733
  • Binding:
  • Paperback
  • Pages:
  • 228
  • Published:
  • March 29, 2023
  • Edition:
  • 23001
  • Dimensions:
  • 155x13x235 mm.
  • Weight:
  • 353 g.
  In stock
Delivery: 3-5 business days
Expected delivery: November 30, 2024

Description of Supernovae, Neutron Star Physics and Nucleosynthesis

This book deals with the interdisciplinary areas of nuclear physics, supernovae and neutron star physics. It addresses the physics and astrophysics of the spectacular supernova explosions, starting with the collapse of massive stars and ending with the birth of neutron stars or black holes. Recent progress in the understanding of core collapse supernova (CCSN) and observational aspects of future detections of neutrinos from CCSN explosions are discussed. The other main focus in this text is the novel phases of dense nuclear matter, its compositions and equation of state (EoS) from low to very high baryon density relevant to supernovae and neutron stars. The multi-messenger astrophysics of binary neutron star merger GW170817 and its relation to EoS through tidal deformability are also presented in detail. The synthesis of elements heavier than iron in the supernova and neutron star environment by the rapid (r)-process are treated here with special emphasis on the nucleosynthesis in theejected material from GW170817. This monograph is written for graduate students and researchers in the field of nuclear astrophysics.

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