论文标题

使用分段多型调查I-Love-Q和W模式通用关系

Investigating the I-Love-Q and w-mode Universal Relations Using Piecewise Polytropes

论文作者

Benitez, Ernesto, Weller, Joseph, Guedes, Victor, Chirenti, Cecilia, Miller, M. Coleman

论文摘要

预计中子恒星的惯性时刻($ i $),潮汐变形($λ$,与爱情号码有关)与旋转质量四极管($ q $)之间的关系紧密,几乎与冷浓密的状态(EOS)几乎无关。这些和类似的关系通常称为“通用”,它们已用于各种应用,包括分析重力波数据。我们使用密集物质的分段多粒子表示扩展了这些研究,包括在高中央密度下具有第二个稳定性的所谓双星。与第一个稳定分支中的关系相比,第二分支关系的紧密程度不及$ \ sim 3 $。我们发现,当我们增加了所考虑的EOS的下限到最大质量时,两个分支的关系都变得更加紧密。我们还提出了$ i $,$λ$,$ q $和复杂频率$ω=ω_r+iΩ_i$之间的新经验关系,并发现它们与I-love-Q相关性相当紧。

Neutron stars are expected to have a tight relation between their moment of inertia ($I$), tidal deformability ($λ$, which is related to the Love number), and rotational mass quadrupole moment ($Q$) that is nearly independent of the unknown equation of state (EoS) of cold dense matter. These and similar relations are often called "universal", and they have been used for various applications including analysis of gravitational wave data. We extend these studies using piecewise polytropic representations of dense matter, including for so-called twin stars that have a second branch of stability at high central densities. The second-branch relations are less tight, by a factor of $\sim 3$, than the relations found in the first stable branch. We find that the relations on both branches become tighter when we increase the lower limit to the maximum mass for the EoS under consideration. We also propose new empirical relations between $I$, $λ$, $Q$, and the complex frequency $ω=ω_R+iω_I$ of the fundamental axial $w$-mode, and find that they are comparably tight to the I-Love-Q correlations.

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