Universal relations for rapidly rotating cold and hot hybrid stars

Author:

Khosravi Largani Noshad1ORCID,Fischer Tobias1ORCID,Sedrakian Armen12ORCID,Cierniak Mateusz1ORCID,Alvarez-Castillo David E3ORCID,Blaschke David B1ORCID

Affiliation:

1. Institute of Theoretical Physics, University of Wrocław , Max Born Pl. 9, PL-50-204 Wrocław, Poland

2. Frankfurt Institute for Advanced Studies , Ruth-Moufang-Straße 1, D-60438 Frankfurt am Main, Germany

3. Institute of Nuclear Physics, Polish Academy of Sciences , Radzikowskiego 152, PL-31-342 Cracow, Poland

Abstract

ABSTRACT Several global parameters of compact stars are related via empirical relations, which are (nearly) independent of the underlying equation of state (EoS) of dense matter and, therefore, are said to be universal. We investigate the universality of relations that express the maximum mass and the radius of non-rotating and maximally rapidly rotating configurations, as well as their moment of inertia, in terms of the compactness of the star. For this, we first utilize a collection of cold (zero-temperature) and hot (isentropic) nucleonic EoS and confirm that the universal relations are holding for our collection of EoS. We then go on, to add to our collection and test for the same universality models of EoS that admit a strong first-order phase transition from nucleonic to deconfined quark matter. Also in this case we find that the universal relations hold, in particular for hot, isentropic hybrid stars. By fitting the universal relations to our computed data, we determine the coefficients entering these relations and the accuracy to which they hold.

Funder

National Science Centre

DFG

COST

Horizon 2020 Framework Programme

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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