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Analysis and fabrication of hybrid metal-dielectric omnidirectional Bragg reflectors

机译:混合金属-电介质全向布拉格反射器的分析与制作

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We describe chalcogenide glass and polymer based Bragg reflectors with a metallic underlayer and use a transfer matrix model to analyze their performance. The angle-averaged reflectance of a hybrid mirror approaches unity for only a few periods and is much higher than that for a nonmetallized Bragg reflector or for the metallic layer alone. For an angle-averaged reflectance greater than 0.99, the addition of a metallic underlayer enables nearly a tripling of the omnidirectional bandwidth (from similar to 110 to similar to 305 nm) concurrent with a significant reduction in the number of required periods (from 10.5 to 4.5). Hybrid mirrors of 4.5 periods, with a 50 nm Au underlayer and overall thickness of similar to 2 mu m, were fabricated atop silicon substrates and characterized. They exhibit an omnidirectional stop band in the 1450-1750 nm wavelength range, in good agreement with theoretical predictions. (c) 2008 Optical Society of America.
机译:我们用金属底层描述硫族化物玻璃和聚合物基布拉格反射器,并使用传递矩阵模型分析其性能。混合镜的角度平均反射率仅在几个周期内趋于一致,并且比非金属化布拉格反射器或仅金属层的平均角度反射率高得多。对于大于0.99的角度平均反射率,添加金属底层可以使全向带宽几乎增加三倍(从相似的110到相似的305 nm),同时所需的周期数从10.5减少到4.5)。在硅衬底上制作了4.5周期的混合镜,其底层为50 nm的Au,总厚度约为2μm,并进行了表征。它们在1450-1750 nm波长范围内表现出全向阻带,与理论预测非常吻合。 (c)2008年美国眼镜学会。

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