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使用吸收分布模型预测激光诱导的大块损伤和对氘化磷酸二氢钾晶体进行预处理。

Predicting laser-induced bulk damage and conditioning for deuterated potassium dihydrogen phosphate crystals using an absorption distribution model.

机构信息

Lawrence Livermore National Laboratory, 7000 East Avenue, Livermore, California 94550, USA.

出版信息

Opt Lett. 2010 Aug 1;35(15):2538-40. doi: 10.1364/OL.35.002538.

Abstract

We present an empirical model that describes the experimentally observed laser-induced bulk damage and conditioning behavior in deuterated potassium dihydrogen phosphate (DKDP) crystals. The model expands on an existing nanoabsorber precursor model and the multistep absorption mechanism to include two populations of absorbing defects, one with linear absorption and another with nonlinear absorption. We show that this model connects previously uncorrelated small-beam damage initiation probability data to large-beam damage density measurements over a range of nanosecond pulse widths. In addition, this work predicts the damage behavior of laser-conditioned DKDP.

摘要

我们提出了一个经验模型,描述了在重水合磷酸二氢钾(DKDP)晶体中实验观察到的激光诱导体损伤和调节行为。该模型扩展了现有的纳米吸收剂前体模型和多步吸收机制,包括两种吸收缺陷种群,一种具有线性吸收,另一种具有非线性吸收。我们表明,该模型将以前不相关的小光束损伤起始概率数据与纳秒脉冲宽度范围内的大光束损伤密度测量联系起来。此外,这项工作还预测了激光调节后的 DKDP 的损伤行为。

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