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Quasistatic magnetic and electric fields generated in intense laser plasma interaction

机译:在强烈的激光等离子体相互作用中产生的准静态磁场和电场

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摘要

A self-consistent kinetic model based on relativistic Vlasov-Maxwell equations is presented for the generation of quasistatic spontaneous fields, i.e., both the quasistatic magnetic (QSM) field and the quasistatic electric (QSE) field, in intense laser plasma interaction. For the circularly polarized laser, QSM field includes two parts, the axial part B-z as well as the azimuthal B-theta; the QSE field E-s, corresponding to the space-charge potential, forms a plasma density channel. For the linearly polarized laser, B-z is absent. Equations for B-z, B-theta, and E-s are uniformly derived from one self-consistent model under the static-state approximation, which satisfies the conservation law of charge. The profile of the plasma density channel and the dependence of the peak QSM fields on the laser intensity are discussed. The experiment and simulation results are explained by the model. The predicted QSM and QSE fields are also observed in the three-dimensional particle simulation. (c) 2005 American Institute of Physics.
机译:提出了一种基于相对论性Vlasov-Maxwell方程的自洽动力学模型,用于在强烈的激光等离子体相互作用中生成准静态自发磁场,即准静态磁场(QSM)和准静态(QSE)场。对于圆偏振激光器,QSM场包括两个部分,轴向部分B-z和方位角B-θ;对应于空间电荷电势的QSE场E-s形成等离子体密度通道。对于线性偏振激光器,没有B-z。 B-z,B-theta和E-s的方程是在静态近似下从一个自洽模型统一得出的,它满足电荷守恒律。讨论了等离子体密度通道的轮廓以及峰值QSM场对激光强度的依赖性。模型解释了实验和仿真结果。在三维粒子模拟中还观察到了预测的QSM和QSE场。 (c)2005年美国物理研究所。

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