首页> 外文会议>Conference on window and dome technologies and materials XI >Study of the Environmental and Optical Durability of AR Microstructures in Sapphire, ALON, and Diamond
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Study of the Environmental and Optical Durability of AR Microstructures in Sapphire, ALON, and Diamond

机译:蓝宝石,ALON和钻石中AR微观结构的环境和光学耐久性研究

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Data is presented for the erosion resistance and pulsed laser damage threshold of anti-reflecting (AR) microstructures built in the surface of the infrared light transmitting window materials sapphire, ALON, and diamond. It was found that the erosion resistance of AR microstructures (ARMs) in sapphire is comparable to the resistance of sapphire with no AR treatment. Such environmental durability, combined with the enhanced light transmission of windows incorporating ARMs, provides system designers with an effective solution for applications requiring high transmission over long mission times operating in abrasive environments. In addition, the optical power handling capacity of sapphire and ALON windows was investigated through pulsed laser damage threshold measurements with a laser source operating in the near infrared at a wavelength of 1573nm. As with prior results reported for ARMs in fused silica and borosilicate glass, the measured damage threshold of 19 J/cm~2 for ARMs treated sapphire windows is comparable to the damage level measured for untreated sapphire windows, and this level is at least two times higher than that found with the most durable thin-film AR coatings designed for fused silica. The damage thresholds measured for untreated and ARMs treated ALON windows was also comparable, but at a level more than four times less than the sapphire windows. Lastly, the long-wave infrared light transmission of high performance ARMs fabricated in clear diamond windows is presented. The Air Force Research Laboratoy's Laser Hardened Materials Evaluation Laboratory at WPAFB tested the damage threshold of the ARMs treated diamond windows along with untreated diamond windows using their pulsed CO2 laser setup operating at 9.56μm. Although the results of the tests using two different laser settings were quite variable and inconsistent due to the nature of the diamond material, the damage thresholds measured were in the 50 to 100 J/cm~2 range, a level much higher than can be achieved with thin-film AR coatings.
机译:提供了在红外透光窗材料蓝宝石,Alon和钻石表面的抗反射(AR)微结构的侵蚀电阻和脉冲激光损伤阈值的数据。结果发现,蓝宝石中AR微观结构(臂)的侵蚀抗性与具有NO AR处理的蓝宝石的抗性相当。这种环境耐用性与Windows合并武器的增强透射透射性相结合,为系统设计人员提供了一种有效的解决方案,用于需要高传输在磨料环境中运行的长期任务时间的高传输。此外,通过脉冲激光损伤阈值测量来研究蓝宝石和ALON窗口的光功率处理能力,其中激光源在近红外线的波长为1573nm。与先前结果报告的熔融二氧化硅和硼硅酸盐玻璃中的臂,测量的伤害阈值为19J / cm〜2用于武器处理的蓝宝石窗户与未经处理的蓝宝石窗户测量的损伤水平相当,此水平至少是两次高于最耐用的薄膜铝涂层,专为熔融二氧化硅设计。针对未处理和武器处理的Alon Windows测量的损伤阈值也是可比的,但在比蓝宝石窗口少4倍的水平上。最后,提出了在透明钻石窗口中制造的高性能臂的长波红外光传输。 WPAFB的空军研究Laboratoy的激光硬化材料评估实验室测试了双臂处理的金刚石窗口的损伤阈值以及未处理的金刚石窗口,使用其脉冲CO2激光设置在9.56μm。尽管使用两个不同的激光设置的测试结果非常可变,并且由于金刚石材料的性质而不一致,但测量的损伤阈值在50至100 J / cm〜2范围内,水平远远高于可以实现的用薄膜铝涂层。

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