Cooling compact stars and phase transitions in dense QCD
arXiv:1509.06986 · doi:10.1140/epja/i2016-16044-y
Abstract
We report new simulations of cooling of compact stars containing quark cores and updated fits to the Cas A fast cooling data. Our model is built on the assumption that the transient behaviour of the star in Cas A is due to a phase transition within the dense QCD matter in the core of the star. Specifically, the fast cooling is attributed to an enhancement in the neutrino emission triggered by a transition from a fully gapped, two-flavor, red-green color-superconducting quark condensate to a superconducting crystalline or an alternative gapless, color-superconducting phase. The blue colored condensate is modeled as a Bardeen-Cooper-Schrieffer (BCS)-type color superconductor with spin-one pairing order parameter. We study the sensitivity of the fits to the phase transition temperature, the pairing gap of blue quarks and the time-scale characterizing the phase transition (the latter modelled in terms of a width parameter). Relative variations in these parameter around their best fit values larger than spoil the fit to the data. We confirm the previous finding that the cooling curves show significant variations as a function of compact star mass, which allows one to account for dispersion in the data on the surface temperatures of thermally emitting neutron stars.
v2: minor clarifications and editorial corrections, added references, version in press. v1: 11 pages, 9 figures, submitted to EPJA 2015 Topical Issue on "Exotic Matter in Neutron Stars"
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Cited by in corpus (15)
- The Equation of State of Hot, Dense Matter and Neutron Stars
- Proto-neutron stars with heavy baryons and universal relations
- Superfluidity and Superconductivity in Neutron Stars
- Reaction rates and transport in neutron stars
- Axion cooling of neutron stars. II. Beyond hadronic axions
- Hyperons in neutron stars and supernova cores
- A light strange star in the remnant HESS J1731-347: minimal consistency checks
- Relativistic mean-field theories for neutron-star physics based on chiral effective field theory
- Constraining Superfluidity in Dense Matter from the Cooling of Isolated Neutron Stars
- Is the compact object associated with HESS J1731-347 a strange quark star?
- Cooling of neutron stars in "nuclear medium cooling scenario" with stiff equation of state including hyperons
- Cooling of hybrid neutron stars with microscopic equations of state
- Neutrino emissivities and bulk viscosity in neutral two-flavor quark matter
- Impact of Multiple Phase Transitions in Dense QCD on Compact Stars
- Exploring phases of dense QCD with compact stars