首页> 外文会议>Laser-Induced Damage in Optical Materials 2004 >Experimental study of 351-nm and 527-nm laser-initiated surface damage on fused silica surfaces due to typical contaminants
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Experimental study of 351-nm and 527-nm laser-initiated surface damage on fused silica surfaces due to typical contaminants

机译:由于典型污染物导致的熔融石英表面351 nm和527 nm激光引发的表面损伤的实验研究

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Optics damage under high-intensity illumination may be the direct result of laser light interaction with a contaminant on the surface. Contaminants of interest are small particles of the materials of construction of large laser systems and include aluminum, various absorbing glasses, and fused silica. In addition, once a damage site occurs and begins to grow, the ejecta from the growing damage site create contamination on nearby optic surfaces and may initiate damage on these surfaces via a process we call "fratricide." We report on a number of experiments that we have performed on fused silica optics that were deliberately contaminated with materials of interest. The experiments were done using 527-nm light as well as 351-nm light. We have found that many of the contaminant particles are removed by the interaction with the laser and the likelihood of removal and/or damage is a function of both fluence and contaminant size. We have developed an empirical model for damage initiation in the presence of contaminants.
机译:高强度照明下的光学损伤可能是激光与表面污染物的相互作用的直接结果。感兴趣的污染物是大型激光系统结构材料的小颗粒,包括铝,各种吸收玻璃和熔融石英。另外,一旦损伤位点发生并开始增长,来自不断增长的损伤位点的喷射物就会在附近的光学表面上产生污染,并可能通过我们称为“杀伤”的过程在这些表面上引发损伤。我们报告了一些我们对熔融石英光学器件进行的实验,这些光学器件故意被感兴趣的材料污染。实验是使用527 nm和351 nm的光完成的。我们已经发现许多污染物颗粒是通过与激光的相互作用而被除去的,并且除去和/或损坏的可能性是通量和污染物大小的函数。我们已经建立了一种在污染物存在下引发破坏的经验模型。

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