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Near-ultraviolet absorption-annealing effects in HfO_2 thin films subjected to continuous-wave laser irradiation at 355 nm

机译:在355nm处对连续波激光照射进行连续波激光照射的HFO_2薄膜近紫外线吸收 - 退火效应

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Hafnium oxide is the most frequently used high-index material in multilayer thin-film coatings for high-power laser applications ranging from near-infrared to near-ultraviolet. Absorption in this high-index material is also known to be responsible for nanosecond-pulse laser-damage initiation in multilayers. In this work, modification of the near-ultraviolet absorption of HfO_2 monolayer films subjected to irradiation by continuous-wave (cw) 355-nm or 351-nm laser light focused to produce power densities of the order of ~100 kW/cm~2 is studied. Up to a 70% reduction in absorption is found in the areas subjected to irradiation. Temporal behavior of absorption is characterized by a rapid initial drop on the few-tens-of-seconds time scale, followed by a longer-term decline to a steady-state level. Absorption maps generated by photothermal heterodyne imaging confirm the permanent character of the observed effect. Nanosecond-pulse, 351-nm and 600-fs, 1053-nm laser-damage tests performed on these cw laser-irradiated areas confirm reduction of absorption by measuring up to 25% higher damage thresholds. We discuss possible mechanisms responsible for near-ultraviolet absorption annealing and damage-threshold improvement resulting from irradiation by near-ultraviolet cw laser light.
机译:氧化铪是多层薄膜涂层中最常用的高折射率材料,用于高功率激光应用,从近红外到近紫外线。还已知在该高折射率材料中吸收是负责多层中的纳秒脉冲激光损伤的原因。在这项工作中,通过连续波(CW)355-nm或351-nm激光进行照射的HfO_2单层膜的接近紫外线吸收的修饰,聚焦为〜100kW / cm〜2的功率密度研究过。在经过辐照的区域中发现了高达70%的吸收。吸收的时间行为的特征在于少数几十秒的时间规模的快速初始下降,然后更长衰落到稳态水平。通过光热外差成像产生的吸收图确认了观察到的效果的永久性。在这些CW激光照射区域进行的纳秒脉冲,351纳米和600-FS,1053-NM激光损伤测试,通过测量高达25%的损伤阈值来确认吸收减少。我们讨论了接近紫外线CW激光照射导致的近紫外吸收退火和损伤阈值改善的可能机制。

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