论文标题

Short GRB 200219a中央发动机中重力波的统治证据

Evidence for gravitational-wave dominated emission in the central engine of short GRB 200219A

论文作者

Lü, Hou-Jun, Yuan, Yong, Lan, Lin, Zhang, Bin-Bin, Zou, Jin-Hang, Peng, Zong-Kai, Shen, Jun, Liang, Yun-Feng, Wang, Xiang-Gao, Liang, En-Wei

论文摘要

GRB 200219a是一个短的伽马射线爆发(GRB),持续$ \ sim 90 $ s,延长排放(EE)。通过分析使用{\ em swift}/bat和{\ em fermi}/gbm观察到的数据,我们发现截止幂律模型可以充分拟合初始短脉冲的光谱,其中$ \ rm e_ {p} = 1387^{+232} {+232} _ { - 134} _ { - 134} $ kev。更有趣的是,它与EE组件和早期X射线数据一起表现出平稳发射,并与$ \ sim t^{ - 1} $ segment平稳连接,然后进行极度陡峭的衰变。由这三个段组成的简短GRB在{\ em swift}时代是独一无二的,很难用黑洞中央发动机的标准内部/外部冲击模型来解释,但可以与NS二元的合并中的磁铁中心发动机的预测一致。我们建议高原发射,然后是$ \ sim t^{ - 1} $衰减相位由毫秒磁盘的旋转驱动,该磁力通过GW四极杆辐射失去其旋转能量。然后,突然的下降衰减是由磁力倒入黑洞之前引起的,然后切换到EM为主导的发射。这是X射线发射具有如此有趣的特征,该特征由GW主导的辐射提供动力。如果是这种情况,也可以估计磁体的物理参数,还讨论了由磁力驱动的GW信号和合并-nova发射。

GRB 200219A is a short gamma-ray burst (GRB) with an extended emission (EE) lasting $\sim 90$s. By analyzing data observed with the {\em Swift}/BAT and {\em Fermi}/GBM, we find that a cutoff power-law model can adequately fit the spectra of the initial short pulse with $\rm E_{p}=1387^{+232}_{-134}$ keV. More interestingly, together with the EE component and early X-ray data, it exhibits plateau emission smoothly connected with a $\sim t^{-1}$ segment and followed by an extremely steep decay. The short GRB composed of those three segments is unique in the {\em Swift} era and is very difficult to explain with the standard internal/external shock model of a black hole central engine, but could be consistent with the prediction of a magnetar central engine from the merger of an NS binary. We suggest that the plateau emission followed by a $\sim t^{-1}$ decay phase is powered by the spin-down of a millisecond magnetar, which loses its rotation energy via GW quadrupole radiation. Then, the abrupt drop decay is caused by the magnetar collapsing into a black hole before switching to EM-dominated emission. This is the first short GRB for which the X-ray emission has such an intriguing feature powered by a magnetar via GW-dominated radiation. If this is the case, one can estimate the physical parameters of a magnetar, the GW signal powered by a magnetar and the merger-nova emission are also discussed.

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