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Absorptance behavior of optical coatings for high-average-power laser applications

机译:高平均功率激光应用中光学涂层的吸收率行为

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摘要

A modified photothermal deformation technique is used to measure the absorptance behaviors of optical multilayered dielectric coatings for a high-power laser system. The surface thermal-lensing modification uses an enlarged probe beam to facilitate alignment of the laser beam and data acquisition. The coatings, both reflective and transmissive types, are made by a physical vapor-deposition process. Coating absorptances are observed to depend on the laser's exposure time and power density. Time-dependent absorptance defect models are proposed. Also, micrometer-sized sites of high absorptance and an area with physical damage can be found during the spatial scans. It is proposed that absorptance values reported for coatings in high-repetition-rate or cw-laser systems include time- and power-dependent behaviors in addition to other relevant irradiation parameters.
机译:改良的光热变形技术用于测量用于高功率激光系统的光学多层介电涂层的吸收率行为。表面热透镜修改使用扩大的探测光束,以利于激光束对准和数据采集。反射型和透射型涂层都是通过物理气相沉积工艺制成的。观察到涂层吸收率取决于激光器的曝光时间和功率密度。提出了时变吸收率缺陷模型。同样,在空间扫描过程中,可以发现微米级的高吸收率位点和具有物理损坏的区域。建议在高重复率或连续激光系统中报告的涂层吸收率值除了其他相关的辐照参数外,还包括时间和功率相关的行为。

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