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Experimental Investigation of the Dynamics of Laser-Induced Gas-Plasma Flows under Femtosecond Laser Ablation of Copper in Vacuum

机译:飞秒激光烧蚀真空中铜引起的激光-等离子体流动力学的实验研究

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摘要

Thermophysical and gas-dynamic characteristics of gas-plasma flows induced by ultrashort laser pulses interacting with a thin-film copper target in vacuum were studied experimentally. Using combined laser interferometry and complex processing of experimental data, we estimated the momentum coupling coefficient and the efficiency of laser-energy conversion to kinetic energy, spatiotemporal distributions of the number density and velocities of particles, pressure, and temperature in the gas-plasma flow. We provide comparative analysis of presented data with those found in the literature, which were obtained by other methods.
机译:实验研究了超短激光脉冲与薄膜铜靶在真空中相互作用引起的等离子体流的热物理和气体动力学特性。使用组合的激光干涉测量法和复杂的实验数据处理,我们估算了动量耦合系数和激光能量转换为动能的效率,气溶胶流中粒子数密度和速度的时空分布,压力和温度。我们提供呈现数据与文献中发现的数据的比较分析,这些数据是通过其他方法获得的。

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