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The role of the gas/plasma plume and self-focusing in a gas-filled capillary discharge waveguide for high-power laser-plasma applications

机译:气体/等离子体羽流和自聚焦在高功率激光等离子体应用的充气毛细管放电波导中的作用

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摘要

The role of the gas/plasma plume at the entrance of a gas-filled capillary discharge plasma waveguide in increasing the laser intensity has been investigated. Distinction is made between neutral gas and hot plasma plumes that, respectively, develop before and after discharge breakdown. Time-averaged measurements show that the on-axis plasma density of a fully expanded plasma plume over this region is similar to that inside the waveguide. Above the critical power, relativistic and ponderomotive self-focusing lead to an increase in the intensity, which can be nearly a factor of 2 compared with the case without a plume. When used as a laser plasma wakefield accelerator, the enhancement of intensity can lead to prompt electron injection very close to the entrance of the waveguide. Self-focusing occurs within two Rayleigh lengths of the waveguide entrance plane in the region, where the laser beam is converging. Analytical theory and numerical simulations show that, for a density of 3.0 × 1018 cm−3, the peak normalized laser vector potential, a 0, increases from 1.0 to 1.85 close to the entrance plane of the capillary compared with a 0 = 1.41 when the plume is neglected.
机译:研究了气体/等离子体羽流在充气毛细管放电等离子体波导入口处在增加激光强度中的作用。区分中性气体和热等离子体羽流,它们分别在放电击穿之前和之后产生。时间平均测量表明,在该区域上完全膨胀的等离子体羽流的轴上等离子体密度与波导内部的相似。超过临界功率,相对论和质动力的自聚焦导致强度增加,与没有羽流的情况相比,强度可以增加近两倍。当用作激光等离子体尾场加速器时,强度的增强可导致非常靠近波导入口的迅速电子注入。在激光束会聚的区域中,自聚焦发生在波导入口平面的两个瑞利长度内。分析理论和数值模拟表明,对于密度为3.0×1018 cm-3的峰,归一化激光矢量电势峰0在接近毛细管入口平面处从1.0增加到1.85,而当密度为0 = 1.41时,则增加。羽被忽略。

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