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arXiv:astro-ph/0609524·v2·Astrophysics

Astronomy meets QCD: cooling constraints for the theories of internal structure of compact objects

S.B. Popov (1)🇷🇺 · D. Blaschke (2)🇩🇪 · H. Grigorian (3)🇩🇪 · B. Posselt (4) (1-Sternberg Astronomical Institute; 2- Univ. Rostock and Bogoliubov Laboratory for Theoretical Physics, JINR; 3- Yerevan Univ. and Univ. Rostock; 4- MPE Garching)🇩🇪

Abstract

We discuss a set of tests which confront observations of cooling compact objects and theories of their thermal evolution. As an example we apply the recently developed - test of compact star cooling theories to hybrid stars with a color superconducting quark matter core, we also apply and discuss other existing tests. While there is not yet a microscopically founded superconducting quark matter phase which would fulfill constraints from cooling phenomenology, we explore the hypothetical 2SC+X phase and show that the magnitude and density-dependence of the X-gap can be chosen to satisfy a set of tests: the temperature -- age (-) test, the - test, the brightness constraint, and the mass spectrum constraint. Some recent modifications of the population synthesis model used to obtain the - distribution are briefly discussed. In addition, we propose to use the age-distance diagram as a new tool to study the local population of young isolated neutron stars.

Comments: 12 pages with 7 figures included, Proc. of QUARKS-2006. Some misprints is corrected

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