论文标题

从$ g $ mode Asteroseology限制国家组的方程式

Constraining equation of state groups from $g$-mode asteroseismology

论文作者

Kuan, Hao-Jui, Krüger, Christian J., Suvorov, Arthur G., Kokkotas, Kostas D.

论文摘要

中子恒星内部的浮力恢复模式敏感地取决于恒星的微物理(例如组成和熵梯度)和巨摩托物(例如恒星质量和半径)的性质。因此,用于$ g $ - 摩德的Asterosology努力尤其是回收有关国家核方程的信息的有希望的途径。在这项工作中,表明总体低温$ g $ - 空间由多个组组成,这些组对应于不同类别的状态方程(例如,HADRONIC与Hybrid)。例如,这与压力驱动模式的情况相反,例如,无论微物理考虑如何,这种模式都倾向于遵循普遍的关系。使用当前可行的状态方程的宽文库,按照相对论计算静态,分层恒星的扰动,特别是如何根据平均质量密度,温度,声音的中心速度和潮汐变形性来分类$ g $ - 空间分组。考虑到有关引力波,积聚爆发,准周期振荡和前体的当前和将来的观察结果,以及来自伽马射线爆发的前体闪光灯,它显示了如何确定$ g $ - 莫德斯属于哪些组。

Buoyancy-restored modes inside neutron stars depend sensitively on both the microphysical (e.g., composition and entropy gradients) and macrophysical (e.g., stellar mass and radius) properties of the star. Asteroseismology efforts for $g$-modes are therefore particularly promising avenues for recovering information concerning the nuclear equation of state. In this work it is shown that the overall low-temperature $g$-space consists of multiple groups corresponding to different classes of equation of state (e.g., hadronic vs. hybrid). This is in contrast to the case of pressure-driven modes, for example, which tend to follow a universal relation regardless of microphysical considerations. Using a wide library of currently-viable equations of state, perturbations of static, stratified stars are calculated in general relativity to demonstrate in particular how $g$-space groupings can be classified according to the mean mass density, temperature, central speed of sound, and tidal deformability. Considering present and future observations regarding gravitational waves, accretion outbursts, quasi-periodic oscillations, and precursor flashes from gamma-ray bursts, it is shown how one might determine which group the $g$-modes belong to.

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