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Ultra-relativistic Plasma Shell Collisions in Pulsar Magnetospheres and γ-ray Bursts

机译:Pulsar磁体中的超优制等离子壳碰撞和γ射线爆发

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Non-linear highly energetic plasma phenomena play a key-role in the understanding of astrophysical objects. We present plasma scenarios that provide a valid description for coherent radiation emission features observed from pulsar magnetospheres and for the self-consistent magnetic field generation essential for γ-ray burst synchrotron models. For this purpose we study ultra-relativistic plasma shell collisions with ensembles of up to 10~9 particles. We introduce the framework of the Particle-In-Cell (PIC) approach, details of the numerical realization and performance issues on the IBM REGATTA system of the Rechenzentrum Garching and the HITACHI supercomputer of the Leibniz Rechenzentrum. A final overview on simulation results and future perspectives closes the contribution.
机译:非线性高度能量等离子体现象在理解天体物理物体方面发挥着关键作用。我们提出了从脉冲磁体观察到的相干辐射发射特征的有效描述的等离子体场景,以及用于γ射线突发同步模型所必需的自给式磁场产生的相干辐射发射特征。为此目的,我们研究超优制的等离子壳碰撞,该壳体碰撞高达10〜9颗粒。我们介绍了粒子粒细胞(PIC)方法的框架,详细说明了rebhenzentrum garching的IBM赛段系统的数值实现和性能问题,以及Leibniz rechenzentrum的Hitachi超级计算机。关于模拟结果和未来观点的最终概述关闭了贡献。

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