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Investigation of processes leading to damage growth in optical materials for large-aperture lasers

机译:研究导致大口径激光的光学材料中损伤增长的过程

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Damage growth in optical materials used in large-aperture laser systems is an issue of great importance to determine component lifetime and therefore cost of operation. Small size damage sites tend to grow when exposed to subsequent high-power laser irradiation at 355 nm. An understanding of the photo-physical processes associated with damage growth is important to devise mitigation techniques. We examine the role of laser-modified material and cracks formed in the crater of damage pits in the damage growth process using fused-silica and deuterated KDP samples. Experimental results indicate that both of the above-mentioned features can initiate plasma formation at fluences as low as 2 J/cm(2). The intensity of the recorded plasma emission remains low for fluences up to approximately 5 J/cm(2) but rapidly increases thereafter, accompanied by an increase of the size of the damage crater. (C) 2002 Optical Society of America. [References: 24]
机译:大孔径激光系统中使用的光学材料中的损伤增长对于确定组件寿命以及因此决定运营成本至关重要。当暴露在随后的355 nm高功率激光照射下时,小尺寸损伤部位往往会生长。对与损伤增长有关的光物理过程的理解对于设计缓解技术很重要。我们研究了使用熔融石英和氘代KDP样品在损伤生长过程中激光改性材料的作用以及在损伤坑的坑口形成的裂纹的作用。实验结果表明,上述两个功能都可以在低至2 J / cm(2)的注量下启动等离子体的形成。对于大约5 J / cm(2)的注量,记录的等离子体发射强度仍然很低,但是此后迅速增加,伴随着损伤弹坑的大小增加。 (C)2002年美国眼镜学会。 [参考:24]

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