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Attributes of flares in gamma-ray bursts: Sample I

机译:γ射线爆发中的耀斑属性:样本I

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摘要

We discuss some of the preliminary results and findings derived from the analysis of a first sample of flares detected by the XRT on board Swift. The analysis shows that the morphology of flares is the one we expect from the collision of ultra-relativistic shells as it happens during the internal shock model proposed by Rees and Meszaros in 1994. Furthermore the Δt/t ratio and the decay-time to rise-time ratio have mean values that are in good agreement with the values observed in the prompt emission pulses that are believed to originate from internal shocks. The conclusion is that the flare analysis favors the internal shock as due to shells that have been ejected by the central engine after the prompt emission. The central engine seems to remain active and capable of generating large amounts of energy also at later times. More data are needed to establish whether or not some of the flares could be due to shells that have been emitted with small Lorentz factor at the time of the prompt emission and generate later time flares due to the catch up of these shells.
机译:我们讨论了一些初步结果和发现,这些结果和发现是通过对Swift上XRT检测到的第一个火炬样本进行分析得出的。分析表明,耀斑的形态是我们从超相对论壳的碰撞中所期望的形态,它是在Rees和Meszaros在1994年提出的内部震荡模型中发生的。此外,Δt/ t比和上升的衰减时间时间比率的平均值与认为是内部冲击产生的快速发射脉冲中观察到的值非常吻合。结论是,火炬分析有利于内部冲击,这是由于在迅速排放后中央发动机已经弹出了炮弹。中央引擎似乎仍然保持活动状态,并且在以后的时间内也能够产生大量能量。需要更多的数据来确定某些耀斑是否可能是由于在迅速发射时以小的洛伦兹因子发射出的炮弹所致,并由于追赶这些炮弹而产生了以后的耀斑。

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