Mitigation of laser plasma filamentation by rotating beam smoothing scheme

Hongbin Nie, Hao Xiong, Zheqiang Zhong, Bin Zhang
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Abstract

The propagation of intense laser beams in plasma inevitably gives rise to laser plasma instabilities, which have a significant impact on the illumination uniformity of the focused spot on the target in inertial confinement fusion (ICF) facilities. Here we propose an ultrafast smoothing scheme using a rotating beam (RB) to mitigate the laser plasma filamentation. Using the propagation model of the rotating beam in plasma for the laser-plasma self-focusing (SF) and filamentation, the filamentation characteristics of laser spots were analyzed. The results indicate that the rotating beam smoothing scheme, operating at picosecond timescale, exhibits superior mitigation effect of laser plasma filamentation.
通过旋转光束平滑方案缓解激光等离子体丝状化问题
强激光束在等离子体中传播时不可避免地会产生激光等离子体不稳定性,这对惯性约束聚变(ICF)设施中目标上聚焦光斑的照明均匀性有很大影响。在此,我们提出了一种使用旋转光束(RB)的超快平滑方案,以减轻激光等离子体丝状化现象。利用旋转光束在等离子体中的传播模型,分析了激光等离子体自聚焦(SF)和丝状化的激光光斑丝状化特性。结果表明,在皮秒时间尺度下运行的旋转光束平滑方案对激光等离子体丝状化具有卓越的缓解效果。
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