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Analytic properties of the electromagnetic field of binary compact stars and electromagnetic precursors to gravitational waves

机译:二元致密恒星电磁场和电磁前体对引力波的分析性质

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We analytically study the properties of the electromagnetic field in the vacuum around close binary compact stars containing at least one neutron star. We show that the orbital motion of the neutron star induces high multipole modes of the electromagnetic field just before the merger. These modes are superimposed to form a spiral arm configuration, and its edge is found to be a likely site for magnetic reconnection. These modes also enhance the total Poynting flux from neutron star binaries by a factor of 2–4. We also indicate that the electric field induced by the orbital motion leads to a magnetosphere around binaries and estimate its plasma density, which has a different parameter dependence than the Goldreich–Julian density. With these properties, we discuss possible electromagnetic counterparts to gravitational wave events, and identify radio precursors, such as fast radio bursts, as the most promising observational targets.
机译:我们分析了围绕含有至少一个中子星的近二元致密恒星围绕真空的电磁场的性质研究。我们表明中子星的轨道运动在合并之前诱导了电磁场的高级多极模式。这些模式叠加以形成螺旋臂配置,并且其边缘被发现是用于磁重新连接的可能部位。这些模式还通过2-4倍,增强了中子星二进制二进制型的总储量通量。我们还表明,由轨道运动引起的电场导致二进制文件周围的磁极,并估计其等离子体密度,其具有与Goldreich-julian密度不同的参数依赖性。通过这些性质,我们讨论了对引力波事件的可能的电磁对应物,并识别无线电前体,例如快速无线电突发,作为最有前途的观察目标。

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