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Laser Damage Threshold Measurements of Micro-Structure Based High Reflectors

机译:基于微结构的高反射镜的激光损伤阈值测量

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In 2007, the pulsed laser induced damage threshold (LIDT) of anti-reflecting (AR) microstructures built in fused silica and glass was shown to be up to three times greater than the LIDT of single-layer thin-film AR coatings, and at least five times greater than multiple-layer thin-film AR coatings. This result suggested that microstructure-based wavelength selective mirrors might also exhibit high LIDT. Efficient light reflection over a narrow spectral range can be produced by an array of sub-wavelength sized surface relief microstructures built in a waveguide configuration. Such surface structure resonant (SSR) filters typically achieve a reflectivity exceeding 99% over a 1-10nm range about the filter center wavelength, making SSR filters useful as laser high reflectors (HR). SSR laser mirrors consist of microstructures that are first etched in the surface of fused silica and borosilicate glass windows and subsequently coated with a thin layer of a non-absorbing high refractive index dielectric material such as tantalum pent-oxide or zinc sulfide. Results of an initial investigation into the LIDT of single layer SSR laser mirrors operating at 532nm, 1064nm and 1573nm are described along with data from SEM analysis of the microstructures, and spectral reflection measurements. None of the twelve samples tested exhibited damage thresholds above 3 J/cm~2 when illuminated at the resonant wavelength, indicating that the simple single layer, first order design will need further development to be suitable for high power laser applications. Samples of SSR high reflectors entered in the Thin Film Damage Competition also exhibited low damage thresholds of less than 1 J/cm~2 for the ZnS coated SSR, and just over 4 J/cm~2 for the Ta2O5 coated SSR.
机译:在2007年,脉冲激光诱导的由熔融石英和玻璃制成的抗反射(AR)微结构的损伤阈值(LIDT)最高是单层薄膜AR涂层的LIDT的三倍,并且在至少是多层薄膜增透膜的五倍。该结果表明,基于微结构的波长选择镜也可能表现出较高的LIDT。通过在波导配置中构建的亚波长尺寸的表面浮雕微结构阵列,可以在狭窄的光谱范围内产生有效的光反射。这种表面结构谐振(SSR)滤光片通常在滤光片中心波长附近的1-10nm范围内实现超过99%的反射率,从而使SSR滤光片可用作激光高反射镜(HR)。 SSR激光镜由微结构组成,这些微结构首先在熔融石英玻璃和硼硅酸盐玻璃窗口的表面蚀刻,然后涂有一层薄层的非吸收性高折射率介电材料,例如五氧化二钽或硫化锌。描述了对在532nm,1064nm和1573nm下工作的单层SSR激光镜的LIDT的初步研究结果,以及来自微结构的SEM分析和光谱反射测量的数据。当以共振波长照射时,测试的十二个样品中没有一个具有高于3 J / cm〜2的损伤阈值,表明简单的单层一阶设计将需要进一步开发以适合大功率激光应用。参加薄膜损伤竞赛的SSR高反射镜样品也显示出低损伤阈值,对于ZnS涂层SSR小于1 J / cm〜2,对于Ta2O5涂层SSR刚好超过4 J / cm〜2。

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