论文标题

来自中子星二进制的晚期灵感的电磁前体耀斑

Electromagnetic precursor flares from the late inspiral of neutron star binaries

论文作者

Most, Elias R., Philippov, Alexander A.

论文摘要

两个中子星的聚结伴随着引力波的发射,还可以具有由质量喷射动力的电磁对应物,并在合并后形成相对论射流。由于中子星可以具有强磁场,因此中子恒星磁层的非平凡相互作用可能会在合并之前为潜在强大的电磁瞬变燃料。为这些前体瞬变提供动力的关键过程是在两颗恒星之间形成的强电流表中的相对论重新连接。在这项工作中,我们提供了详细的分析,分析了二元磁层的扭曲如何导致电磁耀斑的发射,类似于在太阳能电晕中产生的弹性。通过相对论无力的电动力学模拟,我们阐明了不同磁场拓扑在此过程中的作用。我们得出的结论是,除非中子恒星之一的磁场明显弱于另一个,否则将始终发生适当的磁场比对。

The coalescence of two neutron stars is accompanied by the emission of gravitational waves, and can also feature electromagnetic counterparts powered by mass ejecta and the formation of a relativistic jet after the merger. Since neutron stars can feature strong magnetic fields, the non-trivial interaction of the neutron star magnetospheres might fuel potentially powerful electromagnetic transients prior to merger. A key process powering those precursor transients is relativistic reconnection in strong current sheets formed between the two stars. In this work, we provide a detailed analysis of how the twisting of the common magnetosphere of the binary leads to an emission of electromagnetic flares, akin to those produced in the solar corona. By means of relativistic force-free electrodynamics simulations, we clarify the role of different magnetic field topologies in the process. We conclude that flaring will always occur for suitable magnetic field alignments, unless one of the neutron stars has a magnetic field significantly weaker than the other.

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