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arXiv:1706.09701·v3·Nuclear Theory

The in neutron stars - a new degree of freedom?

I. Vidaña🇵🇹 · M. Bashkanov🇬🇧 · D.P. Watts🇬🇧 · A. Pastore🇬🇧

Abstract

Elucidating the appropriate microscopic degrees of freedom within neutron stars remains an open question which impacts nuclear physics, particle physics and astrophysics. The recent discovery of the first non-trivial dibaryon, the , provides a new candidate for an exotic degree of freedom in the nuclear equation of state at high matter densities. In this paper a first calculation of the role of the in neutron stars is performed, based on a relativistic mean field description of the nucleonic degrees of freedom supplemented by a free boson gas of . The calculations indicate that the would appear at densities around three times normal nuclear matter saturation density, influencing the upper mass limit for a stable neutron star and the neutron and proton fractions. New possibilities for neutron star cooling mechanisms arising from the are also predicted.

Comments: Included comparisons with LIGO data. Included the Delta contributions

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