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Rapid High-Energy Emission Variability in Relativistic Pair Plasma Reconnection

机译:相对论对等离子重新连接的快速高能发射变异

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We report on the first study of energetic particles and radiation angular distributions generated in relativistic collisionless pair plasma reconnection, using 2.5-dimensional particle-in-cell simulations. We have discovered that the energetic particles are focused within a small solid angle, and bunched into compact regions inside magnetic islands. In addition, we find that the synchrotron radiation emitted by these particles, as seen by an external observer, is tightly beamed and variable on time scales much shorter than the light-crossing time of the system. This energy dependent "kinetic beaming" differs fundamentally from the achromatic Doppler beaming usually ascribed to relativistic jets. Our findings can account for the puzzling discoveries of bright, short flares seen in high-energy gamma rays, especially from the Crab Nebula and from blazars.
机译:我们报告了使用2.5维粒子内模拟的相对论碰撞对等离子体重新连接中产生的活性粒子和辐射角分布的第一研究。我们已经发现,能量颗粒聚焦在小的固体角度内,并划入磁岛内的紧凑区域。此外,我们发现这些颗粒发出的同步辐射,如外部观察者所见,在时间尺度上紧密地横梁和可变,比系统的光交叉时间短得多。这种能量依赖性“动力学光束”从通常归因于相对论的喷射器的消色差多普勒光束根本不同。我们的调查结果可以解释在高能量伽马光线中看到的明亮短耀斑的令人费解的发现,特别是从螃蟹星云和布拉齐。

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