激光等离子体中随机脉动和轻弹形成的实验研究

N. Vogel, N. Kochan
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引用次数: 0

摘要

实验观察到在接近临界密度的预成形等离子体中产生极为稳定的光弹。光学探测测量表明形成了一个脉动通道,通常直径约为5 /spl μ m /m,指向加热激光束,以及一个断开的大质量等离子体块也向激光束移动。作者报告了100ps Nd:YAG激光束在/spl λ /=1064 nm处与空气中的金属目标相互作用的干涉测量和吸收测量得到的时间分辨结果。在高时空演化的条件下,对密度波纹、光弹的形成及其时间演化进行了研究。这种致密等离子体块的速度达到4.5/spl倍/ 108cm /s数量级。它们在空气中的加速和传播过程中是稳定的。利用探针激光束的法拉第旋转,观察到自生磁场高达8 MG。它们被“冻结”在移动的等离子体块中。
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Experimental investigation of stochastic pulsation and formation of light bullets in a laser-produced plasmas
Generation of an extremely stable light bullets in a preformed plasma near critical density has been observed experimentally. Optical probing measurements indicate the formation of a pulsating channel, typically of about 5 /spl mu/m in diameter, directed towards to a heating laser beam, as well as a disconnected massive plasma blocks moving also towards to laser beam. The authors report time-resolved results obtained by interferometric and absorption measurements for the interaction of a 100 ps Nd:YAG laser beam at /spl lambda/=1064 nm with a metallic target in air. The formation of density ripples, light bullets and their temporal evolution was investigated with high spatial and temporal evolution. The velocity of such dense plasma blocks reaches values of order of 4.5/spl times/10 8 cm/s. And they are stable during the acceleration and propagation in air. Self-generated magnetic fields up to 8 MG were observed by means of Faraday rotation of a probe laser beam. They are "frozen"" in moving plasma blocks.
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