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Initial phase of laser-induced air optical breakdown: a new picture

机译:激光引起的空气光学击穿的初始阶段:新图景

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Optical breakdown has been generated by focusing YAG laser radiation in the air. The laser radiation itself was scattered due to laser-induced air optical breakdown. Angular distributions of scattered radi ation at 1064, 532, and 355 nm were measured. Analysis of the distributions has been performed in terms of Mie scattering. It has been assumed that scattering of laser radiation is due mainly to highly ionized plasma balls in the initial phase of air optical breakdown. The wavelength-dependent angular distribution has been analyzed with two parameters. The mean radius and the plasma frequency of the plasma balls have been determined by a least-squares fit procedure. Observed wavelength-dependent angular distributions are in good agreement with ones calculated by Mie theory. (C) 1998 Optical Society of America. [References: 10]
机译:通过将YAG激光辐射聚焦在空气中已经产生了光学击穿。由于激光引起的空气光学击穿,激光辐射本身被散射。测量了1064、532和355 nm处的散射辐射的角分布。已经根据米氏散射对分布进行了分析。已经假定,激光辐射的散射主要是由于空气光学击穿的初始阶段中高度电离的等离子体球所致。波长相关的角度分布已通过两个参数进行了分析。等离子球的平均半径和等离子频率已通过最小二乘拟合程序确定。观察到的与波长有关的角度分布与由米氏理论计算出的角度分布非常吻合。 (C)1998年美国眼镜学会。 [参考:10]

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