论文标题

在字段相关方法的框架内,混合恒星的结构和潮汐变形性

Structure and tidal deformability of a hybrid star within the framework of the field correlator method

论文作者

Khanmohamadi, S., Moshfegh, H. R., Tehrani, S. Atashbar

论文摘要

已经研究了现场相关方法的非扰动框架内的混合恒星的结构,该方法扩展到零温度极限作为夸克模型。对于Hadronic部门,我们通过使用AV18两体核子核子的相互作用来使用最低阶的约束方法,并补充了现象学urbana型三体力。对于GLUON冷凝物的适应值,G2 = 0:006 GEV4,其临界温度约为Tc? 170 MEV,稳定的混合恒星,最大质量为2:04m?被预测。已经研究了杂化恒星的稳定性,该稳定性已针对G2的广泛凝结物值G2和Quark-Antiquark电位V1进行了研究。状态的混合方程达到了对潮汐变形性的约束,因此对恒星的半径进行了限制,从二进制GW170817中提取。此外,已经研究了不同chirp质量的潮汐变形性和杂交恒星的不同二元质量比。质量 - 拉迪乌斯的关系满足了从中子星内部组成探索器(NICE)获得的新约束。对混合恒星的结构及其紧凑性,潮汐爱数和潮汐变形性的全面分析已针对状态的夸克方程的多个参数集进行。已经研究了不同状态的不同地壳方程对上述数量的影响。我们的计算表明,夸克 - 易药电位V1的值约为0.08 GEV。在这项研究中获得的结果与有关该主题的其他计算有很强的一致。

The structure of hybrid stars within the nonperturbative framework of the field correlator method, extended to zero-temperature limit as a quark model, has been studied. For the hadronic sector, we have used the lowest-order constraint variational method by employing AV18 two-body nucleon-nucleon interaction supplemented by the phenomenological Urbana-type three-body force. For an adapted value of the gluon condensate, G2 = 0:006 GeV4, which gives the critical temperature of about Tc ? 170 MeV, stable hybrid stars with a maximum mass of 2:04M? are predicted. The stability of hybrid star has been investigated for a wide range of gluon condensate value, G2, and quark-antiquark potential, V1. A hybrid equation of state fulfills the constraints on tidal deformability and hence on the radii of the stars, extracted from the binary GW170817. Moreover, tidal deformability for different chirp masses and different binary mass ratios of hybrid stars have been studied. The mass-radius relation satisfies the new constraint obtained from the neutron star interior composition explorer (NICER). A comprehensive analysis on the structure of a hybrid star and also its compactness, tidal Love number, and tidal deformability has been conducted for several parameter sets of the quark equation of state. The influence of different crustal equations of state on the mentioned quantities has been studied. Our calculations suggest the value of quark-antiquark potential, V1, to be around 0.08 GeV. The results achieved in this study are in strong concurrence with the other calculations reported on this subject.

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