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Pre-plasma effect on energy transfer from laser beam to shock wave generated in solid target

机译:等离子体对固体靶中产生的从激光束到冲击波的能量转移的影响

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摘要

Efficiency of the laser radiation energy transport into the shock wave generated in layered planar targets (consisting of massive Cu over coated by thin CH layer) was investigated. The targets were irradiated using two laser pulses. The 1ω pulse with the energy of ~50 J produced a pre-plasma, imitating the corona of the pre-compressed inertial confinement fusion target. The second main pulse used the 1ω or 3ω laser harmonics with the energy of ~200 J. The influence of the preplasma on parameters of the shock wave was determined from the crater volume measurements and from the electron density distribution measured by 3-frame interferometry. The experimental results show that the energy transport by fast electrons provides a definite contribution to the dynamics of the ablative process, to the shock wave generation, and to the ablation pressure in dependence on the target irradiation conditions. The strong influence of the pre-plasma on the investigated process was observed in the 1x case. Theoretical analysis supports the explanation of experimental results.
机译:研究了激光辐射能量传输到分层平面靶(由薄CH层覆盖的块状Cu组成)中产生的冲击波中的效率。使用两个激光脉冲照射目标。能量约为50 J的1ω脉冲产生了一个预等离子体,模仿了预压缩惯性约束聚变靶的电晕。第二个主脉冲使用能量为〜200 J的1ω或3ω激光谐波。等离子体对冲击波参数的影响是由坑体积测量和通过3帧干涉法测量的电子密度分布确定的。实验结果表明,取决于目标辐照条件,快速电子的能量传输对烧蚀过程的动力学,冲击波的产生以及烧蚀压力具有确定的贡献。在1x的情况下,可以看到等离子体前体对研究过程的强烈影响。理论分析支持对实验结果的解释。

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