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The Cooling of Compact Stars

7 Pith papers cite this work. Polarity classification is still indexing.

7 Pith papers citing it
abstract

The cooling of a compact star depends very sensitively on the state of dense matter at supranuclear densities, which essentially controls the neutrino emission, as well as on the structure of the stellar outer layers which control the photon emission. Open issues concern the hyperon population, the presence of meson condensates, superfluidity and superconductivity, and the transition of confined hadronic matter to quark matter. This paper describes these issues and presents cooling calculations based on a broad collection of equations of state for neutron star matter and strange matter. These results are tested against the body of observed cooling data.

citation-role summary

background 1 method 1

citation-polarity summary

years

2026 6 2025 1

representative citing papers

Cooling of Hybrid Stars with a 2SC+$<dd>$ Phase

nucl-th · 2026-06-30 · conditional · novelty 6.0

Hybrid stars with a 2SC+⟨dd⟩ quark core cool hotter than with 2SC and near CFL; with a 3P2 gap near 5×10^8 K their cooling curves pass through the observed temperatures of 3C58, Vela Jr., and Vela-like pulsars.

Bayesian inferences on covariant density functionals from multimessenger astrophysical data: Influences of parametrizations of density dependent couplings

astro-ph.HE · 2025-12-01 · unverdicted · novelty 5.0

Different parametrizations of density dependence in covariant density functionals produce significant variations in the high-density equation of state and symmetry energy, with rational-function forms providing flexibility when saturation properties are adjusted and constrained by multimessenger ast

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