Pressure and speed of sound in two-flavor color-superconducting quark matter at next-to-leading order

物理 奇怪的事 彩色超导电性 粒子物理学 QCD物质 夸克 夸克星 色量子动力学 奇异夸克 上夸克 无质量粒子 核物质 量子电动力学 顶夸克 底部夸克 核子
作者
Andreas Geißel,Tyler Gorda,Jens Braun
出处
期刊:Physical review [American Physical Society]
卷期号:110 (1) 被引量:9
标识
DOI:10.1103/physrevd.110.014034
摘要

Deconfined quark matter at asymptotically high densities is weakly coupled, due to the asymptotic freedom of quantum chromodynamics. In this weak-coupling regime, bulk thermodynamic properties of quark matter, assuming a trivial ground state, are currently known to partial next-to-next-to-next-to-leading order. However, the ground state at high densities is expected to be a color superconductor, in which the excitation spectrum of (at least some) quarks exhibit a gap with a nonperturbative dependence on the strong coupling. In this work, we calculate the thermodynamic properties of color-superconducting quark matter at high densities and zero temperature at next-to-leading order (NLO) in the coupling in the presence of a finite gap. We work in the limit of two massless quark flavors, which corresponds to deconfined symmetric nuclear matter, and further assume that the gap is small compared to the quark chemical potential. In these limits, we find that the NLO corrections to the pressure and speed of sound are comparable in size to the leading-order effects of the gap, and further increase both quantities above their values for nonsuperconducting quark matter. We also provide a parametrization of the NLO speed of sound to guide phenomenology in the high-density region, and we furthermore comment on whether our findings should be expected to extend to the case of three-flavor quark matter of relevance to neutron stars. Published by the American Physical Society 2024
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