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Gravitational-wave Memory from a Propagating Relativistic Jet: A Probe of the Interior of Gamma-Ray Burst Progenitors

机译:来自传播相对论射流的引力波存储器:γ射线突发祖祖的内部探针

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It is believed that the relativistic jets of gamma-ray bursts (GRBs) should initially propagate through a heavy envelope of the massive progenitor stars or through merger ejecta formed from compact binary mergers. The interaction of a jet with a stellar envelope or merger ejecta can lead to the deceleration of the head material of the jet and simultaneously the formation of a hot cocoon. However, this jet-envelope/ejecta interaction is actually undetectable with electromagnetic radiation and can only be inferred indirectly by the structure of the breakout jet. Therefore, as a solution to this phenomenon, we suggest the jet-envelope/ejecta interaction can produce a gravitational-wave (GW) memory of an amplitude of , which could be detected with some future GW detectors sensitive in the frequency range from sub-Hertz to several tens of Hertz. This provides a potential direct way to probe the jet propagation and then the interior of the GRB progenitors.
机译:据信γ射线爆发(GRBS)的相对论射流应最初通过大规模祖恒星的沉重封套或通过由紧凑的二元合并形成的合并喷射物繁殖。 喷射与恒星封套或合并喷射物的相互作用可以导致喷射的头部材料的减速并同时形成热茧。 然而,这种喷射包络/喷射物相互作用实际上无法与电磁辐射无法察觉,并且只能通过突破射流的结构间接推断。 因此,作为解决这种现象的解决方案,我们建议喷射包络/喷射器相互作用可以产生幅度的引力波(GW)存储器,这可以用频率范围内敏感的一些未来的GW探测器检测到的幅度。 赫兹到几十赫兹。 这提供了探测喷射繁殖的潜在直接方法,然后是GRB祖细胞的内部。

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