High-power laser-induced damage in optical components

J. Bettis, R. House, A. Guenther, A. Glass
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Abstract

In the phenomenon of laser-induced damage there are two regions of pulse duration that exhibit distinctly different damage responses. In short pulse (i.e., psec to a few tens of μsec) lasers the damage response is generally catastrophic in nature and resembles the melting, pitting, and spallation characteristic of the electric breakdown of solid dielectrics. In long pulse lasers, which here include cw and the quasi-cw situation of rep-rate lasers, damage is manifested both catastrophically in fractures and subtly in distortions that result in degraded performance. These apparently different damage responses do not imply that a different set of material and physical properties are operative in the two-time regimes but rather that the interaction time may elevate a particular property in relative importance.
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高功率激光对光学元件的损伤
在激光诱导损伤现象中,有两个脉冲持续时间区域表现出明显不同的损伤响应。在短脉冲(即psec到几十μsec)激光中,损伤响应通常是灾难性的,类似于固体电介质电击穿的熔化、点蚀和散裂特征。在长脉冲激光器中,包括连续波和准连续波的重复速率激光器,损伤既表现为灾难性的裂缝,也表现为轻微的变形,从而导致性能下降。这些明显不同的损伤响应并不意味着不同的材料和物理性质在两时间机制中起作用,而是相互作用时间可能会提高特定性质的相对重要性。
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