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Enhanced shock wave detection sensitivity for laser-produced plasmas in low pressure ambient gases using interferometry

机译:使用干涉仪增强了对低压环境气体中激光产生的等离子体的冲击波检测灵敏度

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We report results from the analysis of the shock wave formed following the creation of a laser-produced plasma in a gaseous atmosphere, using both interferometry and shadowgraphy. A Nomarski polarization interferometer and a focused-type shadowgraphy setup were utilized to track the evolution of the shock wave with high spatial and temporal resolution for a variety of incident laser energies and ambient gas pressures. It was found that the visibility of the shock wave was high for both techniques at high gas pressure (≥100 mbar) and incident laser energies (≥400 mJ). The velocity of the shock wave in these regimes was of the order of several km s~(-1). At lower pressures (≈ 1-10 mbar) and incident laser energies (≈100-200 mJ), the visibility of the shock wave decreased dramatically and, in some cases, disappeared completely from the shadowgrams. In contrast, the shock wave remained visible in the interferograms, manifesting itself as a blurring of the fringes. The shock wave visibility was improved further by simply differentiating the interferograms to enhance the fringe boundaries. Shock velocities, exceeding 100 km s~(-1), were detected at low background gas pressures where the enhanced shock wave visibility was provided by the interferometer.
机译:我们报告了使用干涉测量法和阴影照相法对在气态气氛中产生激光产生的等离子体后形成的冲击波进行分析的结果。利用Nomarski偏振干涉仪和聚焦型阴影摄影设备来跟踪各种入射激光能量和环境气压下具有高时空分辨率的冲击波的演变。发现在高气压(≥100mbar)和入射激光能量(≥400mJ)下,两种技术的冲击波可见度都很高。在这些情况下,冲击波的速度约为几公里s〜(-1)。在较低的压力(≈1-10 mbar)和入射激光能量(≈100-200mJ)下,冲击波的可见度显着下降,在某些情况下,从影图中完全消失。相反,在干涉图中,冲击波仍然可见,表现为条纹的模糊。只需区分干涉图以增强条纹边界,即可进一步提高冲击波的可见性。在低背景气压下检测到超过100 km s〜(-1)的冲击速度,其中干涉仪提供了增强的冲击波可见性。

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