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Constraining the Neutron Star Radius with Joint Gravitational-wave and Short Gamma-Ray Burst Observations of Neutron Star–Black Hole Coalescing Binaries

机译:用中子星-黑洞聚结二元的引力波和短伽马射线爆裂联合观测来约束中子星半径

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Coalescing neutron star (NS)–black hole (BH)?binaries are promising sources of gravitational-waves (GWs) that are predicted to be detected within the next few years by current GW observatories. If the NS is tidally disrupted outside the BH innermost stable circular orbit, an accretion torus may form, and this could eventually power a short gamma-ray burst (SGRB). The observation of an SGRB in coincidence with gravitational radiation from an NS–BH?coalescence would confirm the association between the two phenomena and also give us new insights into NS physics. We present here a new method to measure NS radii and thus constrain the NS equation of state using joint SGRB and GW observations of NS–BH?mergers. We show that in the event of a joint detection with a realistic GW signal-to-noise ratio of 10, the NS radius can be constrained to 20% accuracy at 90% confidence.
机译:聚结中子星(NS)-黑洞(BH)?双星是引力波(GWs)的有前途的源头,目前的GW观测站预计将在未来几年内发现它们。如果NS在BH最内层的稳定圆形轨道外被潮汐扰动破坏,则可能形成吸积环,这最终可能为短伽玛射线爆发(SGRB)提供动力。观察到SGRB与NS-BH凝聚的引力辐射同时发生,将证实这两种现象之间的联系,也为我们提供有关NS物理学的新见解。我们在这里提出一种测量NS半径的新方法,从而使用NS–BH?合并的SGRB和GW联合观测值来约束NS状态方程。我们显示,如果联合检测的实际GW信噪比为10,则NS半径可以在90%的置信度下被限制为20%的精度。

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