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Simulation of relativistic shocks and associated radiation from turbulent magnetic fields

机译:湍流磁场的相对论冲击和相关辐射的模拟

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Using our new 3-D relativistic particle-in-cell (PIC) code, we investigated long-term particle acceleration associated with a relativistic electron-positron jet propagating in an unmagnetized ambient electron-positron plasma. The simulations were performed using a much longer simulation system than our previous simulations in order to investigate the full nonlinear stage of the Weibel instability and its particle acceleration mechanism. Cold jet electrons are thermalized and ambient electrons are accelerated in the resulting shocks. Acceleration of ambient electrons leads to a maximum ambient electron density three times larger than the original value as predicted by hydrodynamic compression. Behind the bow shock, in the jet shock, strong electromagnetic fields are generated. These fields may lead to time dependent afterglow emission. In order to go beyond the standard synchrotron model used in astrophysical objects we have used PIC simulations and calculated radiation based on first principles. We calculated radiation from electrons propagating in a uniform parallel magnetic field to verify the technique. We also used the technique to calculate emission from electrons based on simulations with a small system. We obtain spectra which are consistent with those generated from electrons propagating in turbulent magnetic fields. This turbulent magnetic field is similar to the magnetic field generated at an early nonlinear stage of the Weibel instability. A fully developed shock within a larger system may generate a jitter/synchrotron spectrum.
机译:使用我们的新的3-D相对论粒子内(PIC)代码,我们研究了与在未磁化的环境电子 - 电子正电流等离子体中传播的相对论电子正电子射流相关的长期粒子加速度。使用比我们之前的模拟更长的模拟系统进行模拟,以便研究Weibel不稳定性的全部非线性阶段及其颗粒加速机制。冷喷射电子是热化的,并且在所产生的冲击中加速环境电子。环境电子的加速度导致最大限度的环境电子密度比通过流体动力学压缩预测的原始值大的三倍。在弯曲冲击后面,在喷射冲击,产生强大的电磁场。这些字段可能导致时间依赖余辉发射。为了超越用于天体物理物体的标准同步rotron模型,我们使用了基于第一原理的PIC模拟和计算的辐射。我们计算了在均匀平行磁场中传播的电子传播的辐射以验证该技术。我们还使用该技术基于具有小系统的模拟来计算来自电子的发射。我们获得与在湍流磁场中传播的电子产生的那些一致的光谱。这种湍流磁场类似于Weibel不稳定性的早期非线性阶段产生的磁场。在较大系统内完全发育的冲击可能会产生抖动/同步频率。

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