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The Physics of Neutron Stars

Astrophysics 2011-05-05 v1 Nuclear Theory

Abstract

Neutron stars are some of the densest manifestations of massive objects in the universe. They are ideal astrophysical laboratories for testing theories of dense matter physics and provide connections among nuclear physics, particle physics and astrophysics. Neutron stars may exhibit conditions and phenomena not observed elsewhere, such as hyperon-dominated matter, deconfined quark matter, superfluidity and superconductivity with critical temperatures near 1010{10^{10}} kelvin, opaqueness to neutrinos, and magnetic fields in excess of 101310^{13} Gauss. Here, we describe the formation, structure, internal composition and evolution of neutron stars. Observations that include studies of binary pulsars, thermal emission from isolated neutron stars, glitches from pulsars and quasi-periodic oscillations from accreting neutron stars provide information about neutron star masses, radii, temperatures, ages and internal compositions.

Keywords

Cite

@article{arxiv.astro-ph/0405262,
  title  = {The Physics of Neutron Stars},
  author = {J. M. Lattimer and M. Prakash},
  journal= {arXiv preprint arXiv:astro-ph/0405262},
  year   = {2011}
}

Comments

22 pages, 4 figures and 1 table