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Influence of laser preconditioning on the capacity of optical films to resist laser-induced damage

机译:激光预处理对光学膜抵抗激光损伤的能力的影响

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摘要

As a technique to improve the ability of optical films to resist laser-induced damage (ARLID), laser preconditioning has been investigated broadly. In this paper, the laser preconditioning effect has been analyzed based on the defect-initialized damage mechanism that the author had put forward previously. Theoretical results show that an energy density scope (PEDS) exists in which the preconditioning laser can effectively improve the ARLID of optical films. In addition, when the energy density of the testing laser pulse is altered, the boundary of PEDS will change accordingly. Experimental results have verified these theoretical assumptions. PEDS will also become wider if the critical energy density of the preconditioning laser that can induce films' micro-damage increases, or the critical energy density of the preconditioning laser that can cause laser annealing decreases. In these cases, it is relatively easy to improve the ARLID of optical films. Results of the current work show great significance in enhancing the ARLID of optical films through the laser preconditioning technique.
机译:作为提高光学膜抵抗激光引起的损伤(ARLID)的能力的技术,已经广泛研究了激光预处理。本文基于作者先前提出的缺陷初始化损伤机理对激光预处理效果进行了分析。理论结果表明,存在能量密度镜(PEDS),其中预处理激光可以有效地改善光学膜的ARLID。另外,当改变测试激光脉冲的能量密度时,PEDS的边界将相应地改变。实验结果验证了这些理论假设。如果会引起薄膜微损伤的预处理激光器的临界能量密度增加,或者会引起激光退火的预处理激光器的临界能量密度降低,则PEDS也将变得更宽。在这些情况下,相对容易地提高光学膜的ARLID。当前工作的结果显示出通过激光预处理技术增强光学膜的ARLID的重要意义。

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