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Universal Relations for Neutron Stars: Selected Recent Works

机译:中子恒星普遍关系:最近的作品

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It is well known that the properties of a compact star in general depend on the equation-of-state (EOS) of the star. However, various approximately EOS-insensitive universal relations connecting different quantities of compact stars are known to exist. In this contribution, we discuss two selected recent works in the area of research of universal relations. We first discuss how taking the effect of elasticity into account in the calculation of the tidal deformability of compact stars with crystalline quark matter can break the universal I-Love relation originally discovered for non-rotating fluid compact stars. We then review two new universal relations discovered for the spacetime of a rapidly rotating neutron star that connect the orbital radius and frequency of the innermost stable circular orbit (ISCO) to the spin frequency and mass of the star. We also demonstrate how the ISCO universal relations can be applied to accreting neutron stars in low-mass X-ray binaries. In particular, the ISCO universal relations predict that the mass of the neutron star in the system 4U 0614+09 is 2.0M_⊙, assuming that the observed highest kilohertz quasi-periodic oscillations in the system is due to the orbital motion at the ISCO, and also the spin frequency of the star as inferred from the X-ray burst oscillations detected by Swift can be confirmed in the future.
机译:众所周知,紧凑型明星的特性一般取决于恒星的状态方程(EOS)。然而,已知存在连接不同数量的紧凑型恒星的各种大致EOS不敏感的普遍关系。在这一贡献中,我们讨论了普遍关系研究领域的两个选定的最新作品。我们首先讨论如何在计算晶夸克的紧凑型恒星的潮汐可变形性中考虑弹性的效果如何破坏最初发现用于非旋转流体紧凑型恒星的通用I-Love关系。然后,我们审查了两个新的普遍关系,该关系为快速旋转的中子星的时空,将轨道半径和频率与最内稳定的圆形轨道(ISCO)的频率连接到旋转频率和恒星的质量。我们还展示了ISCO普遍关系如何应用于低质量X射线二进制中的增强中子恒星。特别地,ISCO普遍关系预测系统4U 0614 + 09中的中子星的质量为2.0m_‖,假设系统中观察到的最高千赫兹准周期性振荡是由于ISCO的轨道运动,并且还可以在将来从Swift检测到的X射线突发振荡中推断出星形的旋转频率。

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