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Breaking the EOS-gravity degeneracy with masses and pulsating frequencies of neutron stars

机译:用中子星的质量和脉动频率打破EOS重力简并性

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摘要

A thorough understanding of many astrophysical phenomena associated with compact objects requires reliable knowledge about both the equation of state (EOS) of super-dense nuclear matter and the theory of strong-field gravity simultaneously because of the EOS-gravity degeneracy. Currently, variations of the neutron star (NS) mass-radius correlation from using alternative gravity theories are much larger than those from changing the NS matter EOS within known constraints. At least two independent observables are required to break the EOS-gravity degeneracy. Using model EOSs for hybrid stars and a Yukawa-type non-Newtonian gravity, we investigate both the mass-radius correlation and pulsating frequencies of NSs. While the maximum mass of NSs increases, the frequencies of the f, p_1, p_2, and wI pulsating modes are found to decrease with the increasing strength of the Yukawa-type non-Newtonian gravity, providing a useful reference for future determination simultaneously of both the strong-field gravity and the supranuclear EOS by combining data of x-ray and gravitational wave emissions of NSs.
机译:对与致密物体有关的许多天体现象的透彻理解,需要同时具有关于超致密核物质的状态方程(EOS)和强场引力理论的可靠知识,因为EOS引力的简并性。当前,使用替代重力理论​​产生的中子星(NS)质量半径相关性的变化要比在已知约束条件下改变NS物质EOS的变化大得多。至少需要两个独立的观测值才能打破EOS重力的简并性。使用混合恒星的模型EOS和Yukawa型非牛顿重力,我们研究了NS的质量半径相关性和脉动频率。当NSs的最大质量增加时,发现f,p_1,p_2和wI脉动模式的频率随汤河型非牛顿重力的强度增加而减小,为将来同时确定这两种情况提供了有用的参考通过结合NSs的X射线和引力波数据,获得强场重力和核上EOS。

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