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Electron acceleration from rest to GeV energy by chirped axicon Gaussian laser pulse in vacuum in the presence of wiggler magnetic field

机译:在Wiggler磁场的存在下,通过啁啾轴高斯激光脉冲从静息到GEV能量的电子加速度

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摘要

This paper presents a scheme of electron energy enhancement by employing frequency - chirped lowest order axicon focussed radially polarised (RP) laser pulse in vacuum under the influence of wiggler magnetic field. Terawatt RP laser can be focussed down to similar to 5 mu m by an axicon optical element, which produces an intense longitudinal electric field. This unique property of axicon focused Gaussian RP laser pulse is employed for direct electron acceleration in vacuum. A linear frequency chirp increases the time duration of laser-electron interaction, whereas, the applied magnetic wiggler helps in improving the strength of ponderomotive force (v) over right arrow x (B) over right arrow and periodically deflects electron in order to keep it traversing in the accelerating phase up to longer distance. Numerical simulations have been carried out to investigate the influence of laser, frequency chirp and magnetic field parameters on electron energy enhancement. It is noticed that an electron from rest can be accelerated up to GeV energy under optimized laser and magnetic field parameters. Significant enhancement in the electron energy gain of the order of 11.2 GeV is observed with intense chirped laser pulse in the presence of wiggler magnetic field of strength 96.2 kG.
机译:本文通过在Wiggler磁场的影响下采用频率啁啾最低阶AxiCon聚焦径向极化(RP)激光脉冲的频率啁啾最低阶AxiCon的电子能源增强方案。 Terawatt RP激光器可以通过轴的光学元件聚焦到类似于5μm,这产生强烈的纵向电场。 Axicon聚焦高斯RP激光脉冲的这种独特性能用于真空中的直接电子加速度。线性频率啁啾增加了激光 - 电子相互作用的时间持续时间,而施加的磁性Wiggler有助于在右箭头上提高右箭头X(B)右箭头X(B)的追击力(V)的强度,并定期偏转电子以保持其遍历加速相位到更长的距离。已经进行了数值模拟,以研究激光,频率啁啾和磁场参数对电子能量增强的影响。注意,在优化的激光和磁场参数下,可以从静止的电子加速到GEV能量。在威格勒磁场强度的情况下,在存在的强度96.2kg的情况下,观察到11.2 gev的电子能量增益的显着增强。

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