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arXiv:1912.02312·v3·High Energy Physics — Phenomenology

Exploring hybrid equation of state with constraints from tidal deformability of GW170817

Qing-wu Wang🇨🇳 · Chao Shi🇨🇳 · Yan Yan🇨🇳 · Hong-Shi Zong🇨🇳

Abstract

With a interpolation method on the P- plane, a hybrid equation of state is explored. The quark phase is described by our newly developed self-consistent two-flavor NambuJona-Lasinio model. It retains the contribution from the vector channel in the Fierz-transformed Lagrangian by introducing a weighting parameter [Chin. Phys. C \textbf{43}, 084102 (2019)]. In the hadron phase we use the relativistic mean-field theory. We study the dependence of hybrid EOS and mass-radius relation on . It is found that increasing makes the hybrid EOS softer in the medium pressure. We can get stellar mass larger than . Further, we calculate the tidal deformability for binary stars and compare with recent analysis GW170817 [Phys. Rev. X \textbf{9}, 011001 (2019)].

Comments: 9 pages, 5 figures, 3 tables

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