论文标题

在GRB160821A中的同步加速器发射显示的γ射线爆发中颗粒加速度的发作

Onset of particle acceleration during the prompt phase in gamma-ray bursts as revealed by synchrotron emission in GRB160821A

论文作者

Ryde, Felix, Iyyani, Shabnam, Ahlgren, Björn, Peer, Asaf, Sharma, Vidushi, Lundman, Christoffer, Axelsson, Magnus

论文摘要

GRB迅速阶段期间伽马射线发射和颗粒加速度的物理过程仍未解决。为了对观察进行明确的物理模型,需要清楚地识别排放机制。明确识别的一个实例是在GRB160821A非常强的耀斑期间的同步加速器发射,该发射发生在135 s的及时阶段。在这里,我们表明,这种耀斑中辐射电子的分布最初非常狭窄,但后来发展了加速电子的幂律尾巴。因此,我们首次确定GRB射流中粒子加速度的发作。耀斑与中央发动机的后期能量释放一致,导致外部震动遇到祖先狼射线星的预先存在的戒指星云。相对论的前进和反向冲击发生,导致两个具有相似特性的不同发射区。粒子加速度仅发生在正向冲击中,进入密集的星云物质。在这里,磁化也降低到临界值以下,这使费米的加速能够运行。利用这个事实,我们发现了$ 420 \ simleqγ\ simleq 770 $的批量洛伦兹因子,以及$ r \ sim 10^{18} $ cm的发射半径,表明周围立即的Circumburst周围有巨大的气体。因此,观察粒子加速度的发作对流动的特性以及无碰撞天体物理冲击的粒子加速度的理论给出了新的独立限制。

The physical processes of the gamma-ray emission and particle acceleration during the prompt phase in GRBs are still unsettled. In order to perform an unambiguous physical modelling of observations, a clear identification of the emission mechanism is needed. An instance of a clear identification is the synchrotron emission during the very strong flare in GRB160821A, that occurs during the prompt phase at 135 s. Here we show that the distribution of the radiating electrons in this flare is initially very narrow, but later develops a power-law tail of accelerated electrons. We thus identify for the first time the onset of particle acceleration in a GRB jet. The flare is consistent with a late energy release from the central engine causing an external-shock as it encounters a preexisting ring nebula of a progenitor Wolf-Rayet star. Relativistic forward and reverse shocks develop, leading to two distinct emission zones with similar properties. The particle acceleration only occurs in the forward shock, moving into the dense nebula matter. Here, the magnetisation also decreases below the critical value, which allows for Fermi acceleration to operate. Using this fact, we find a bulk Lorentz factor of $420 \simleq Γ\simleq 770$, and an emission radius of $R \sim 10^{18}$ cm, indicating a tenuous gas of the immediate circumburst surrounding. The observation of the onset of particle acceleration thus gives new and independent constraints on the properties of the flow as well as on theories of particle acceleration in collisionless astrophysical shocks.

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