Slinker Keith, Pitz Jeremey, Sihn Sangwook, Vernon Jonathan P
Opt Express. 2019 Feb 18;27(4):4748-4757. doi: 10.1364/OE.27.004748.
Scalable and repeatable determinations of continuous wave (CW) laser-induced damage thresholds are required to develop materials for applications ranging from deformable mirrors to momentum transfer. Current standards assume sample geometries and beam conditions where CW damage thresholds are constant in linear power density, depend strongly on substrate thermal conductivity, and are insensitive to environmental conditions. In this work, the CW laser response of thin PET films with a reflective Al/MgF coating are experimentally assessed over a range of beam diameters and irradiances. The laser-induced damage threshold decreases with increased exposure time down to a temporally-independent irradiance, decreases with increased beam diameter to an irradiance that is independent of spot size, and depends on radiative and convective cooling. Models are used to define the minimum spot size and exposure time required to achieve such constant damage threshold irradiances for thin reflectors.
为了开发适用于从可变形镜到动量传递等各种应用的材料,需要可扩展且可重复地测定连续波(CW)激光诱导损伤阈值。当前标准假定样品几何形状和光束条件下,连续波损伤阈值在线性功率密度下是恒定的,强烈依赖于基底热导率,并且对环境条件不敏感。在这项工作中,对具有反射性Al/MgF涂层的PET薄膜在一系列光束直径和辐照度下的连续波激光响应进行了实验评估。激光诱导损伤阈值随暴露时间增加而降低,直至达到与时间无关的辐照度,随光束直径增加而降低至与光斑尺寸无关的辐照度,并且取决于辐射和对流冷却。使用模型来定义实现薄反射器这种恒定损伤阈值辐照度所需的最小光斑尺寸和暴露时间。