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UV fatigue investigations with non-destructive tools in silica

机译:用二氧化硅中的非破坏性工具进行紫外线疲劳调查

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A fatigue effect is often observed under multiple laser irradiations, overall in UV. This decrease of LIDT, is a critical parameter for laser sources with high repetition rates and with a need of long-term life, as in spatial applications at 355nm. A challenge is also to replace excimer lasers by solid laser sources, this challenge requires to improve drastically the lifetime of optical materials at 266nm. Main applications of these sources are devoted to material surface nano-structuration, spectroscopy and medical surgeries. In this work we focus on the understanding of the laser matter interaction at 266nm in silica in order to predict the lifetime of components and study parameters links to these lifetimes to give keys of improvement for material suppliers. In order to study the mechanism involved in the case of multiple irradiations, an interesting approach is to involve the evolution of fluorescence, in order to observe the first stages of material changes just before breakdown. We will show that it is sometime possible to estimate the lifetime of component only with the fluorescence measurement, saving time and materials. Moreover, the data from the diagnostics give relevant informations to highlight "defects" induced by multiple laser irradiations.
机译:通常在多次激光照射下(通常在紫外线下)会产生疲劳效果。对于在355nm的空间应用中,重复率高且需要长期使用寿命的激光源,LIDT的降低是至关重要的参数。挑战还在于用固态激光源代替准分子激光器,这一挑战要求大大提高266nm光学材料的寿命。这些来源的主要应用致力于材料表面的纳米结构,光谱学和医学手术。在这项工作中,我们专注于了解在266nm波长的二氧化硅中的激光物质相互作用,以便预测组件的寿命,并研究与这些寿命相关的参数,从而为材料供应商提供改进的关键。为了研究多次照射情况下的机理,一种有趣的方法是涉及荧光的演变,以便观察在分解之前材料变化的第一阶段。我们将证明,有时可以仅通过荧光测量来估计组件的寿命,从而节省时间和材料。此外,来自诊断程序的数据还提供了相关信息,以突出显示由多次激光照射引起的“缺陷”。

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