论文标题

FRB 200428之前的Magnetar SGR J1935+2154的巨型故障

A giant glitch from the magnetar SGR J1935+2154 before FRB 200428

论文作者

Ge, Mingyu, Yang, Yuan-Pei, Lu, Fangjun, Zhou, Shiqi, Ji, Long, Zhang, Shuangnan, Zhang, Bing, Zhang, Liang, Wang, Pei, Lee, Kejia, Zhu, Weiwei, Li, Jian, Hou, Xian, Li, Qiao-Chu

论文摘要

快速无线电爆发(FRB)是通常来自宇宙学距离的无线电频率中观察到的短脉冲。从银河磁铁SGR J1935+2154发现FRB 200428及其X射线对应物表明,至少可以通过磁铁生成一些FRB。但是,来自磁铁的大多数X射线爆发与无线电发射无关。只有在极少数情况下才能产生FRB,这一事实引发了有关FRB的特殊触发机制的问题。在这里,我们报告了SGR J1935+2154的巨型故障,发生在FRB 200428的前一天,大约$ 3.1 \ pm2.5 $ \,$Δν= 19.8 \ pm1.4 $ {\ rm $ $ $ $ $ $ $ $ hz}和$δ\ dot \ dot \ dot = 6.3 \ d.63 \ pm1.1 $} $}相应的旋转功率变化速率$δ\dotν/\dotν$是所有检测到的脉冲星故障中最大的之一。小故障包含延迟的旋转过程,该过程仅在螃蟹脉冲星和Magnetar 1e 2259+586中检测到,持续偏移速率的较大持续偏移,还有一个比持久性小的数量级的恢复成分。小故障和FRB 200428之间的时间巧合表明两者之间的物理联系。内部触发的磁体巨大故障可能会大大改变了磁层结构,而有利于FRB的产生,随后触发了许多X射线爆发,最终通过其他地壳裂纹和Alfvén波浪激发和繁殖。

Fast radio bursts (FRBs) are short pulses observed in radio frequencies usually originating from cosmological distances. The discovery of FRB 200428 and its X-ray counterpart from the Galactic magnetar SGR J1935+2154 suggests that at least some FRBs can be generated by magnetars. However, the majority of X-ray bursts from magnetars are not associated with radio emission. The fact that only in rare cases can an FRB be generated raises the question regarding the special triggering mechanism of FRBs. Here we report a giant glitch from SGR J1935+2154, which occurred approximately $3.1\pm2.5$\,day before FRB 200428, with $Δν=19.8\pm1.4$ {\rm $μ$Hz} and $Δ\dotν=6.3\pm1.1$\,pHz s$^{-1}$. The corresponding spin-down power change rate $Δ\dotν/\dotν$ is among the largest in all the detected pulsar glitches. The glitch contains a delayed spin-up process that is only detected in the Crab pulsar and the magnetar 1E 2259+586, a large persistent offset of the spin-down rate, and a recovery component which is about one order of magnitude smaller than the persistent one. The temporal coincidence between the glitch and FRB 200428 suggests a physical connection between the two. The internally triggered giant glitch of the magnetar likely altered the magnetosphere structure dramatically in favour of FRB generation, which subsequently triggered many X-ray bursts and eventually FRB 200428 through additional crustal cracking and Alfvén wave excitation and propagation.

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