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Electromagnetic Burst Generation during Annihilation of Magnetic Field in Relativistic Laser-Plasma Interaction

机译:相对论激光等离子体相互作用中磁场湮灭期间的电磁突发产生

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We present the results of theoretical studies of formation and evolution of the current sheet in a colliosionless plasma during magnetic reconnection in relativistic limit. Relativistic magnetic reconnection is driven by parallel laser pulses interacting with underdense plasma target. Annihilation of laser created magnetic field of opposite polarity generates strong non-stationary electric field formed in between the region with opposite polarity magnetic field accelerating charged particles within the current sheet. This laser-plasma target configuration is discussed in regard with the laboratory modeling of charged particle acceleration and gamma flash generation in astrophysics. We present the results of 3-dimensional kinetic simulations and theoretical studies on the formation and evolution of the current sheet in a collisionless plasma during magnetic field annihilation in the ultra-relativistic limit. Annihilation of oppositively directed magnetic fields driven by two laser pulses interacting with underdense plasma target is accompanied by an electromagnetic burst generation. The induced strong non-stationary longitudinal electric field accelerates charged particles within the current sheet. Properties of the laser-plasma target configuration are discussed in the context of the laboratory modeling for charged particle acceleration and gamma flash generation in astrophysics.
机译:我们在相对论极限中磁重构期间介绍了沉积等离子体中当前片的形成和演化的理论研究结果。相对论的磁性重新连接由与未与稳态等离子体靶相互作用的平行激光脉冲驱动。激光产生的相反极性的抗磁场产生强的非平稳电场,在该区域之间形成,极性磁场在当前片内的带电粒子加速器。在天体物理学中的带电粒子加速和γ闪光发电的实验室建模方面讨论了这种激光等离子体靶构造。我们在磁场湮灭期间呈现3维动力学模拟的结果和对当前片材在超相邻极限中的磁场湮灭期间的当前片的形成和演化。由两个激光脉冲驱动的相反的定向磁场的湮灭与不发阵等离子体目标相互作用伴随着电磁爆发产生。诱导的强的非静止纵向电场加速了当前片材内的带电粒子。在天体物理学中的带电粒子加速和γ闪光发电的实验室建模的背景下讨论了激光等离子体靶构造的性质。

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