Neutrino emissivity in the quark-hadron mixed phase of neutron stars
William M. Spinella (1,2), Fridolin Weber (2,3), Gustavo A. Contrera, (4,5,6), and Milva G. Orsaria (4,6) ((1) Computational Science Research, Center San Diego State University, San Diego, CA, USA, (2) Department of, Physics, San Diego State University, San Diego, CA, USA

TL;DR
This paper investigates how a crystalline quark-hadron mixed phase in neutron star cores affects neutrino emission, finding significant contributions at low temperatures and quark fractions, impacting neutron star thermal evolution.
Contribution
It introduces a detailed calculation of neutrino emissivity from a crystalline quark-hadron mixed phase using advanced models and the Glendenning construction, highlighting its importance in neutron star cooling.
Findings
Neutrino emissivity from the mixed phase is substantial at low temperatures and quark fractions.
Static-lattice contributions dominate over lattice vibrations in neutrino emission.
The presence of a crystalline mixed phase significantly influences neutron star thermal evolution.
Abstract
Numerous theoretical studies using various equation of state models have shown that quark matter may exist at the extreme densities in the cores of high-mass neutron stars. It has also been shown that a phase transition from hadronic matter to quark matter would result in an extended mixed phase region that would segregate phases by net charge to minimize the total energy of the phase, leading to the formation of a crystalline lattice. The existence of quark matter in the core of a neutron star may have significant consequences for its thermal evolution, which for thousands of years is facilitated primarily by neutrino emission. In this work we investigate the effect a crystalline quark-hadron mixed phase can have on the neutrino emissivity from the core. To this end we calculate the equation of state using the relativistic mean-field approximation to model hadronic matter and a…
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Taxonomy
TopicsPulsars and Gravitational Waves Research · Geophysics and Gravity Measurements · High-pressure geophysics and materials
