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Laser induced electron acceleration in the presence of static electric and magnetic fields in a plasma

机译:在等离子体中存在静电场和磁场的情况下,激光诱导的电子加速度

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摘要

Results of a fully relativistic three-dimensional (3-D) single particle code, supported by a theoretical model, on direct laser acceleration of electrons in radial electric and azimuthal magnetic static fields are presented. The ponderomotive force and the longitudinal components of the laser field are taken into account in the code. The electron motion in the static fields is similar to the motion in a magnetic wiggler. At resonance, when the bounce frequency of the wiggling motion is within a few percent of the Doppler shifted laser frequency, the amplitude of transverse oscillation shows a rapid increase accompanied by a fast rise in energy and parallel momentum. For this situation, a theoretical model of energy exchange between the electrons and the laser provides reasonable estimate of energy gain. The single particle code is used in Monte Carlo simulations to study the energy distribution and angular spread of the accelerated electrons in a self-focused high intensity laser pulse interaction. (C) 2000 American Institute of Physics. [S1070-664X(00)02107-8]. [References: 28]
机译:给出了理论模型支持的完全相对论的三维(3-D)单粒子代码在径向电场和方位磁场中对电子直接激光加速的结果。编码中考虑了磁动力和激光场的纵向分量。静态场中的电子运动类似于磁性摆动器中的运动。在共振时,当摆动运动的弹跳频率在多普勒频移激光频率的百分之几以内时,横向振荡的幅度会迅速增加,同时能量和平行动量也会迅速增加。对于这种情况,电子与激光之间的能量交换的理论模型提供了能量增益的合理估计。在蒙特卡洛模拟中使用单个粒子代码来研究自聚焦高强度激光脉冲相互作用中加速电子的能量分布和角展度。 (C)2000美国物理研究所。 [S1070-664X(00)02107-8]。 [参考:28]

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