首页> 外文会议>Laser-Induced Damage in Optical Materials 2004 >Measurement and prediction of rear surface damage in fused silica windows caused by UV nanosecond pulses
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Measurement and prediction of rear surface damage in fused silica windows caused by UV nanosecond pulses

机译:紫外纳秒脉冲对熔融石英玻璃后表面损伤的测量和预测

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The occurrence of filaments in fused silica irradiated by UV laser light is well described by the product of light Intensity by Length of propagation in the material. For a spatially gaussian peak, in the well-known treatment by Marburger et al, this product is predicted to depend upon input power and non linear index. At a wavelength of 355 or 351 nm, the compilation of our past and present measurements give a smaller critical intensity by length product, i.e. a higher non linear index, than previously measured. These values of non linear parameters allow for the prediction of rear surface damage on thick windows. The predictions compare well with damage probability measurements. Even when the intensity is not high enough to generate filaments, self-focusing is still the cause of damage, due to the increase of output intensity and fluence.
机译:通过光强度与材料传播长度的乘积很好地描述了紫外线激光照射在熔融石英中细丝的出现。对于空间高斯峰,在Marburger等人的众所周知的处理中,预计该乘积取决于输入功率和非线性指数。在355或351 nm的波长下,我们过去和现在的测量结果汇总得出的长度强度临界强度值比以前的测量值小,即非线性指数更高。这些非线性参数值可用于预测厚窗上的后表面损坏。这些预测与损坏概率的测量结果比较良好。即使强度不足以产生细丝,由于输出强度和通量的增加,自聚焦仍然是损坏的原因。

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