论文标题

来自多中音的中子星观测的天体物理和理论物理学意义

Astrophysical and theoretical physics implications from multimessenger neutron star observations

论文作者

Silva, Hector O., Holgado, A. Miguel, Cárdenas-Avendaño, Alejandro, Yunes, Nicolás

论文摘要

中子星的内部组成探索器(NICE)最近测量了分离的中子星PSR J0030+0451的质量和赤道半径。我们使用这些测量值来推断惯性时刻,四极力矩和第一次孤立的中子恒星的表面偏心率,使用对上核问题状态不明的数量之间的关系。我们还使用这些结果来预测双脉冲星二进制J0737-3039中中子星A的惯性时刻,这一数量预计将在未来十年内通过无线电观测直接测量。将这些信息与潮汐爱数量的测量与Ligo/处女座观测相结合,我们提出并实施了第一个对一般相对性的理论敏锐性和状态不敏感的检验。将这些限制专门针对特定的修改理论,我们发现与一般相对论的一致性使迄今为止对重力平价违规的最严格约束,超过了所有先前报道的七个数量级的界限,并为未来的一般相对性测试带来了与多中心剂中子恒星观察的一般性测试。

The Neutron Star Interior Composition Explorer (NICER) recently measured the mass and equatorial radius of the isolated neutron star PSR J0030+0451. We use these measurements to infer the moment of inertia, the quadrupole moment, and the surface eccentricity of an isolated neutron star for the first time, using relations between these quantities that are insensitive to the unknown equation of state of supranuclear matter. We also use these results to forecast the moment of inertia of neutron star A in the double pulsar binary J0737-3039, a quantity anticipated to be directly measured in the coming decade with radio observations. Combining this information with the measurement of the tidal Love number with LIGO/Virgo observations, we propose and implement the first theory-agnostic and equation-of-state-insensitive test of general relativity. Specializing these constraints to a particular modified theory, we find that consistency with general relativity places the most stringent constraint on gravitational parity violation to date, surpassing all other previously reported bounds by seven orders of magnitude and opens the path for future a test of general relativity with multimessenger neutron star observations.

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