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Methods and challenges in laser-induced damage threshold evaluation of volumetric photopolymerized micro-structures

机译:体积光聚合微结构的激光损伤阈值评估方法和挑战

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摘要

The spread of micro-optical elements fabrication by femtosecond 3D nanolithography is limited due to lack of available optically resilient photopolymers. We have conducted S-on-1 laser-induced damage threshold (LIDT) measurement experiment with two different photopolymers, which demonstrated varying damage probability distribution after which suitable linear approximation technique was not evident. Moreover, different optical damage mechanisms were present during laser irradiation of diverse photopolymers that featured different chemical composition and physical properties. Seeking to determine reliable LIDT evaluation method which would provide trustworthy results for all the investigated materials, we have used three different ISO standard-like approaches. Results comparison for two different cases was conducted concluding that linear approximation of input fluencies range where optical damage probability is 0%
机译:由于缺乏可用的光学弹性光敏聚合物,飞秒3D纳米光刻技术制造微光学元件的普及受到限制。我们对两种不同的光敏聚合物进行了S-on-1激光诱导损伤阈值(LIDT)测量实验,结果证明了不同的损伤概率分布,在此之后合适的线性逼近技术并不明显。此外,在激光辐照具有不同化学组成和物理性质的多种光敏聚合物的过程中,存在着不同的光学损伤机理。为了确定可靠的LIDT评估方法,该方法将为所有研究的材料提供值得信赖的结果,我们使用了三种不同的类似于ISO标准的方法。进行了两种不同情况的结果比较,得出结论:在光学损伤概率为0%

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