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arXiv:1505.05094·v2·Nuclear Theory

Crystalline chiral condensates as a component of compact stars

S. Carignano🇺🇸 · E.J. Ferrer🇺🇸 · V. de la Incera🇺🇸 · L. Paulucci🇧🇷

Abstract

We investigate the influence of spatially inhomogeneous chiral symmetry-breaking condensates in a magnetic field background on the equation of state for compact stellar objects. After building a hybrid star composed of nuclear and quark matter using the Maxwell construction, we find, by solving the Tolman-Oppenheimer-Volkoff equations for stellar equilibrium, that our equation of state supports stars with masses around 2 for values of the magnetic field that are in accordance with those inferred from magnetar data. The inclusion of a weak vector interaction term in the quark part allows one to reach 2 solar masses for relatively small central magnetic fields, making this composition a viable possibility for describing the internal degrees of freedom of this class of astrophysical objects.

Comments: Added new graphs, references and physical discussions. This version to appear at Phys. Rev. D

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