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Electromagnetic emission from laser wakefields in magnetized underdense plasmas

机译:磁化密集等离子体中激光尾波产生的电磁辐射

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摘要

A wakefield driven by a short intense laser pulse in a perpendicularly magnetized underdense plasma is studied analytically and numerically for both weakly relativistic and highly relativistic situations. Owing to the DC magnetic field, a transverse component of the electric fields associated with the wakefield appears, while the longitudinal wave is not greatly affected by the magnetic field up to 22 Tesla. Moreover, the scaling law of the transverse field versus the longitudinal field is derived. One-dimensional particle-in-cell simulation results confirm the analytical results. Wakefield transmission through the plasma-vacuum boundary, where electromagnetic emission into vacuum occurs, is also investigated numerically. These results are useful for the generation of terahertz radiation and the diagnosis of laser wakefields.
机译:在弱相对论和高度相对论的情况下,都通过分析和数值研究了在垂直磁化的稀疏等离子体中由短强激光脉冲驱动的尾波场。由于直流磁场的作用,出现了与尾波场相关的电场的横向分量,而纵波受22特斯拉以下磁场的影响不大。此外,得出了横向场与纵向场的比例定律。一维单元内粒子模拟结果证实了分析结果。还通过数值研究了穿过等离子体-真空边界的Wakefield传输,在那里发生了向真空的电磁发射。这些结果对于产生太赫兹辐射和诊断激光尾波很有用。

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