The acceleration phenomenon of shock wave induced by millisecond-nanosecond combined-pulse laser on silicon

Jing-yi Li, Yahui Li, Chen Zhao, W. Zhang, Guangyong Jin
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Abstract

Silicon is an indispensable raw material in the manufacture of electronic devices, and it is widely used in aerospace field. We study the motion morphology and velocity of LSW induced by millisecond-nanosecond combined-pulse laser with different pulse delay and laser energy density irradiating silicon based on the method of laser shadowgraphy. Experimental results show that when the pulse delay is 2.4 ms, the millisecond(ms) and nanosecond(ns) laser energy density is 301 J cm−2 and 12 J cm−2, respectively, the velocity of shock wave is 1.1 times faster than that induced by single ns pulse laser. It is inferred that the shock wave propagates in the plasma is faster than that in air. The results of this research can provide a reference for the field of optimized laser propulsion.
毫秒-纳秒联合脉冲激光在硅上产生的激波加速现象
硅是制造电子器件不可缺少的原材料,在航空航天领域有着广泛的应用。基于激光暗影法,研究了不同脉冲延时和能量密度的毫秒-纳秒组合脉冲激光照射硅后LSW的运动形态和运动速度。实验结果表明,当脉冲延迟为2.4 ms时,毫秒(ms)和纳秒(ns)激光能量密度分别为301 J cm−2和12 J cm−2,激波速度比单ns脉冲激光诱导的激波速度快1.1倍。由此推断,激波在等离子体中的传播速度比在空气中的传播速度快。研究结果可为优化激光推进领域提供参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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