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Influence of oil contamination on the optical performance and laser induced damage of fused silica

机译:油污对熔融石英光学性能和激光损伤的影响

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The influence of oil contamination on the optical performance of fused silica and laser induced damage threshold (LIDT) at 355 nm is studied. The liquid vacuum oil is artificially spun on the fused silica surface. Optical microscopy and ultraviolet-visible (UV-vis) spectrophotometer are used to identify and understand the potential influence of oil contamination on the optical performance of fused silica. The results show that a large number of oil droplets are observed on the surface of fused silica after spin-coating, and the transmissivity of fused silica decreases with the increasing oil quantity. The LIDTs of fused silica decrease with the increasing oil mass for both on input and output surfaces at 355 nm, and the LIDT of fused silica with oil on input surface is lower than that on output surface at same contamination level. The damage mechanisms are also discussed by the photo-thermal measurement and three dimensional finite difference time domain (3D-FDTD) method. The experimental and simulated results show that the electric-field modulation by oil droplets, rather than its photo-thermal absorption, is mainly responsible for the oil contamination induced laser damage of fused silica. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了油污对熔融石英光学性能和355 nm激光损伤阈值(LIDT)的影响。将液态真空油人工纺丝在熔融石英表面上。光学显微镜和紫外可见分光光度计用于识别和理解油污对熔融石英光学性能的潜在影响。结果表明,旋涂后在熔融石英表面观察到大量的油滴,熔融石英的透射率随油量的增加而降低。在355 nm的输入和输出表面上,熔融石英的LIDT随输入和输出表面上油质量的增加而降低,在相同污染水平下,输入表面上有油的熔融石英的LIDT低于输出表面。还通过光热测量和三维有限差分时域(3D-FDTD)方法讨论了损伤机理。实验和模拟结果表明,油滴对电场的调制而不是光热吸收,主要是由油污染引起的熔融石英激光损伤。 (C)2015 Elsevier Ltd.保留所有权利。

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