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Simulation Study of Magnetic Fields Generated by the Electromagnetic Filamentation Instability

机译:电磁细丝失稳产生的磁场的模拟研究

摘要

We have investigated the effects of plasma instabilities driven by rapid e(sup plus or minus) pair cascades, which arise in the environment of GRB sources as a result of back-scattering of a seed fraction of the original spectrum. The injection of e(sup plus or minus) pairs induces strong streaming motions in the ambient medium. One therefore expects the pair-enriched medium ahead of the forward shock to be strongly sheared on length scales comparable to the radiation front thickness. Using three-dimensional particle-in-cell simulations, we show that plasma instabilities driven by these streaming e(sup plus or minus) pairs are responsible for the excitation of near-equipartition, turbulent magnetic fields. Our results reveal the importance of the electromagnetic filamentation instability in ensuring an effective coupling between e(sup plus or minus) pairs and ions, and may help explain the origin of large upstream fields in GRB shocks.
机译:我们已经研究了由快速e(正负对)级联​​驱动的等离子体不稳定性的影响,这是在GRB源环境中由于原始光谱的种子部分的反向散射而产生的。 e(正负)对的注入在环境介质中引起强烈的流运动。因此,人们期望在向前冲击之前,富于成对的介质在与辐射前沿厚度相当的长度尺度上被强烈剪切。使用三维粒子模拟,我们显示了由这些流e(正负)对驱动的等离子体不稳定性是造成近等分湍流磁场激发的原因。我们的研究结果揭示了电磁丝状失稳在确保e(正负)对与离子之间有效耦合方面的重要性,并可能有助于解释GRB激波中较大的上游磁场的起源。

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