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Strangeness in Neutron Star Cooling
Author(s) -
ChangHwan Lee
Publication year - 2018
Publication title -
nuclear theory
Language(s) - English
Resource type - Conference proceedings
DOI - 10.7566/jpscp.20.011002
Subject(s) - strangeness , neutron star , star (game theory) , neutron , physics , nuclear physics , astronomy , astrophysics , hadron
We study the thermal evolution of neutron stars in the presence of hyperons or kaons in the core. Our results indicate that the nucleon and hyperon direct Urca processes play crucial roles for the cooling of neutron stars. The presence of hyperons drives fast cooling mechanisms in two ways: 1) it allows the hyperon direct Urca prior to the nucleon direct Urca, 2) and it makes the nucleon direct Urca more feasible by reducing the neutron Fermi momentum. We found that the neutron star equation of state (EOS) with hyperons can be consistent with both mass and temperature observations. We also found that the neutron star EOS with kaon condensation can be consistent with observations, even though the cooling behavior is seldom useful to identify or isolate the effect of kaon condensation.

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