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arXiv:1010.3041·v2·High Energy Astrophysical Phenomena

Equation of state for the MCFL phase and its implications for compact star models

L. Paulucci (UFABC, Brazil)🇧🇷 · Efrain J. Ferrer (UTEP, USA)🇺🇸 · Vivian de la Incera (UTEP, USA)🇺🇸 · J. E. Horvath (IAG-USP, Brazil)🇧🇷

Abstract

Using the solutions of the gap equations of the magnetic-color-flavor-locked (MCFL) phase of paired quark matter in a magnetic field, and taking into consideration the separation between the longitudinal and transverse pressures due to the field-induced breaking of the spatial rotational symmetry, the equation of state (EoS) of the MCFL phase is self-consistently determined. This result is then used to investigate the possibility of absolute stability, which turns out to require a field-dependent bag constant to hold. That is, only if the bag constant varies with the magnetic field, there exists a window in the magnetic field vs. bag constant plane for absolute stability of strange matter. Implications for stellar models of magnetized (self-bound) strange stars and hybrid (MCFL core) stars are calculated and discussed.

Comments: 11 pp. 11 figures

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