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首页> 外文期刊>The Astrophysical journal >LONG-TIME EVOLUTION OF MAGNETIC FIELDS IN RELATIVISTIC GAMMA-RAY BURST SHOCKS
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LONG-TIME EVOLUTION OF MAGNETIC FIELDS IN RELATIVISTIC GAMMA-RAY BURST SHOCKS

机译:相对论伽马射线爆发激波中磁场的长时间演化

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摘要

We investigate the long-time evolution of magnetic fields generated by the two-stream instability at ultra- and subrelativistic astrophysical collisionless shocks. Based on three-dimensional particle-in-cell (PIC) simulation results, we introduce a two-dimensional toy model of interacting current filaments. Within the framework of this model, we demonstrate that the field correlation scale in the region far downstream of the shock grows nearly as the light crossing time, λ(t) ~ ct, thus making the diffusive field dissipation inefficient. The obtained theoretical scaling is tested using numerical PIC simulations. This result extends our understanding of the structure of collisionless shocks in gamma-ray bursts and other astrophysical objects.
机译:我们研究了在超相对论和亚相对论天体物理无碰撞冲击下由两股流不稳定性产生的磁场的长期演化。基于三维粒子(PIC)仿真结果,我们介绍了相互作用的当前细丝的二维玩具模型。在此模型的框架内,我们证明了在激波下游的区域中的场相关标度几乎随着光穿越时间λ(t)〜ct的增加而增长,从而使扩散场的耗散效率低下。使用数值PIC仿真测试获得的理论比例。这一结果扩展了我们对伽马射线爆发和其他天体物体中无碰撞冲击的结构的理解。

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