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首页> 外文期刊>Physics of plasmas >Controlling the betatron oscillations of a wakefield-accelerated electron beam by temporally asymmetric laser pulses
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Controlling the betatron oscillations of a wakefield-accelerated electron beam by temporally asymmetric laser pulses

机译:通过时间不对称激光脉冲控制尾场加速电子束的电子加速器振荡

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摘要

Based on two-dimensional particle-in-cell simulations, we investigated the electron beam's transverse oscillations by temporally asymmetric laser pulses in laser wakefield acceleration. Of particular interest in this article are the effects of ultrashort laser pulses having sharp rising and slow falling time scales. In this situation, the accelerated electron beam interacts directly with the laser field and undergoes transverse oscillations due to a phase-slip with the laser field. This oscillation can be matched with the betatron oscillation due to the focusing force of the ions, which can lead to a large transverse oscillation amplitude due to the resonance between them. Furthermore, in this case, the electron beam can be microbunched at the laser wavelength, which may provide the possibility for generation of a coherent synchrotron radiation.
机译:基于二维单元格内粒子模拟,我们通过在激光尾波场加速中的时间不对称激光脉冲研究了电子束的横向振荡。本文特别感兴趣的是具有短的上升和下降时间尺度的超短激光脉冲的影响。在这种情况下,加速的电子束直接与激光场相互作用,并由于与激光场的相移而发生横向振荡。由于离子的聚焦力,该振荡可与电子感应加速器振荡匹配,由于离子之间的共振,其可导致较大的横向振荡幅度。此外,在这种情况下,电子束可以在激光波长处微束聚,这可以提供产生相干同步辐射的可能性。

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