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首页> 外文期刊>High temperature: English translation of teplofizika vysokikh temperatur >Investigation of Gas-Dynamic Processes in Optical Discharges with an Ablating Polymer Wall in Air and Vacuum Conditions
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Investigation of Gas-Dynamic Processes in Optical Discharges with an Ablating Polymer Wall in Air and Vacuum Conditions

机译:在空气和真空条件下用烧蚀聚合物壁进行光放电中气体动力学过程的研究

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摘要

Experimental research results are presented on the formation dynamics and macrostructure of optical discharges of condensed matter of apolymer series ((C_2F_4)_n, (CH_2O)_n) under the action of a femtosecond laser (τ_(0.5) ~ 45-70 fs) pulses (I_0 ~ 10~(13)-10~(15) W/cm~2) in the UV - NIR spectral region (λ ~ 266, 400, 800 nm) under air and vacuum conditions. Electron density distributions in the near-surface area of the optical discharge, vapor expansion, and velocities of shock-wave front propagation are determined for the first time by precise laser pulse micro-interferometry with high spatial and time resolution. The correspondence is shown of the values of the laser ablation spectral-energy threshold, as determined by interference microscopy and the interferometry of a gas-plasma flow. An estimation technique for the total momentum of light-erosion gas-plasma flow in the sub-nanonewton range is proposed and implemented for the first time. The results of comparative analysis are presented on the laser radiation conversion efficiency at different stages of femtosecond optical discharges.
机译:在飞秒激光(τ_(0.5)〜45-70 fs)脉冲的作用下,对聚合物系列((C_2F_4)_n,(CH_2O)_n)的凝聚态光放电的形成动力学和宏观结构进行了实验研究。在空气和真空条件下在UV-NIR光谱区域(λ〜266、400、800 nm)中(I_0〜10〜(13)-10〜(15)W / cm〜2)。通过具有高空间和时间分辨率的精密激光脉冲微干涉技术,首次确定了光放电近表面区域中的电子密度分布,蒸气膨胀和冲击波前传播的速度。示出了激光消融光谱能量阈值的对应关系,该阈值是通过干涉显微镜和气-等离子体流的干涉法确定的。提出并首次实现了对亚纳米牛顿范围内的轻度气蚀等离子体流总动量的估算技术。比较分析的结果显示了飞秒光放电不同阶段的激光辐射转换效率。

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