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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Scaling laws in laser-induced potassium dihydrogen phosphate crystal damage by nanosecond pulses at 3 omega
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Scaling laws in laser-induced potassium dihydrogen phosphate crystal damage by nanosecond pulses at 3 omega

机译:3Ω的纳秒脉冲在激光诱导的磷酸二氢钾钾晶体损伤中的尺度定律

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摘要

A model for the description of laser-induced damage in bulk potassium dihydrogen phosphate (KDP) by nanosecond laser pulses is addressed. It is based on the heating of nanometric plasma balls whose absorption efficiency is described through the Mie theory. The plasma optical indices are then evaluated within the Drude model framework. This modeling provides an evaluation of the scaling law exponent x linking the damage threshold laser pulse energy density F-c to the pulse duration tau as F-c=alpha tau(x), where alpha is a constant. The inverse problem for which the knowledge of experimental data allows one to determine physical parameters of the model is considered. The results suggest that the critical plasma density is reached in a time much shorter than the pulse duration. Information about the nature of defects responsible for the damage initiation is also provided. (C) 2008 Optical Society of America.
机译:提出了一种模型,用于描述纳秒级激光脉冲对大量磷酸二氢钾(KDP)的激光诱导损伤。它基于纳米等离子球的加热,其吸收效率通过Mie理论进行了描述。然后在Drude模型框架内评估等离子体光学指数。该模型提供了将损伤阈值激光脉冲能量密度F-c与脉冲持续时间tau链接为F-c =αtau(x)(其中α是常数)的缩放定律指数x的评估。考虑到反问题,对于该反问题,实验数据的知识使人们能够确定模型的物理参数。结果表明,在比脉冲持续时间短得多的时间内达到了临界等离子体密度。还提供了有关造成损坏的原因的缺陷性质的信息。 (C)2008年美国眼镜学会。

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