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Time resolved interferometric study of the plasma plume induced shock wave in confined geometry: Two-dimensional mapping of the ambient and plasma density

机译:有限几何条件下等离子体羽流激波的时间分辨干涉测量研究:环境和等离子体密度的二维映射

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摘要

An experimental investigation of the laser produced plasma induced shock wave in the presence of confining walls placed along the axial as well as the lateral direction has been performed. A time resolved Mach Zehnder interferometer is set up to track the primary as well as the reflected shock waves and its effect on the evolving plasma plume has been studied. An attempt has been made to discriminate the electronic and medium density contributions towards the changes in the refractive index of the medium. Two dimensional spatial distributions for both ambient medium density and plasma density (electron density) have been obtained by employing customised inversion technique and algorithm on the recorded interferograms. The observed density pattern of the surrounding medium in the presence of confining walls is correlated with the reflected shock wave propagation in the medium. Further, the shock wave plasma interaction and the subsequent changes in the shape and density of the plasma plume in confined geometry are briefly described. Published by AIP Publishing.
机译:在沿轴向和横向放置约束壁的情况下,对激光产生的等离子体诱发的冲击波进行了实验研究。建立了时间分辨马赫曾德尔干涉仪,以跟踪主冲击波和反射冲击波,并研究了其对不断发展的等离子体羽流的影响。试图区分电子和介质密度对介质折射率变化的贡献。通过对记录的干涉图采用定制的反演技术和算法,已经获得了环境介质密度和等离子体密度(电子密度)的二维空间分布。在存在密闭壁的情况下,观察到的周围介质的密度模式与介质中反射的冲击波传播相关。此外,简要描述了冲击波等离子体相互作用以及在受限几何形状中等离子体羽流形状和密度的后续变化。由AIP Publishing发布。

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