Laser-induced transparency and bulk vaporization during nanosecond pulsed laser ablation

A. Samokhin, S. Andreev, I. N. Kartashov, I. Smurov
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Abstract

It is shown that the propagation of the laser-induced transparency front under the condition of the resent experiments [J. H. Yoo, S. H. Jeong, R. Greif and R. E. Russo, J. Appl. Phys. V.88, N.3, p.1638 (2000); J. H. Yoo, S. H. Jeong, X.L.Mao, R. Greif and R. E. Russo, J. Appl. Phys.Lett., V.76, N.6, p.783 (2000)] should manifest itself in a significant contribution to the pressure recoil (photoacoustic effect). The stationary evaporation regime with possible laser-induced transparency can be achieved at much lower intensities than the ones used in the cited paper and plasma plume formation can be avoided. The model of the bulk vaporization which involves the periodic phase explosions is discussed as well.
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纳秒脉冲激光烧蚀过程中激光诱导的透明和体汽化
结果表明,在当前实验条件下,激光诱导透明锋的传播[J]。刘汉,郑少华,r.g reif, r.e. Russo, J. Appl。理论物理。V.88, N.3, p.1638(2000);刘家辉,郑世辉,毛晓林,R. Greif, R. E. Russo, J. Appl。Phys.Lett。, V.76, N.6, p.783(2000)]应该表现为对压力反冲(光声效应)的重要贡献。在比引用论文中使用的低得多的强度下,可以实现具有可能的激光诱导透明的固定蒸发制度,并且可以避免等离子体羽流的形成。讨论了涉及周期相爆炸的本体汽化模型。
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