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Internal omni-directional reflector using a low refractive index material for light-emitting diodes

机译:使用低折射率材料的内部全向反射器用于发光二极管

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A triple-layer omni-directional reflector (ODR), which consists of a semiconductor, a transparent quarter-wavelength dielectric layer, and a metal layer, has high reflectivity at all angles of incidence when used as an internal ODR. In this paper, triple-layer ODRs are demonstrated that incorporate nanoporous SiO/sub 2/, a new low-refractive-index (low-n) material with refractive index /spl Lt/1.46. Internal reflectivity measurements, including the angular dependence of R, are presented. The angle-integrated TE/TM-averaged reflectivity of the triple-layer reflector using nanoporous SiO/sub 2/ is 99.4 %. This is the highest ever reported averaged reflectivity for an internal ODR. The mirror loss of the triple-layer ODR is a factor of 7 lower than the mirror loss of conventional metal reflectors. The results indicate the great potential of the ODR for light-emitting diodes with high light-extraction efficiency.
机译:由半导体,透明的四分之一波长介电层和金属层组成的三层全向反射器(ODR)在用作内部ODR时在所有入射角均具有高反射率。在本文中,展示了三层ODR,它们结合了纳米多孔SiO / sub 2 /,这是一种新型的低折射率(low-n)材料,其折射率为/ spl Lt / 1.46。介绍了内部反射率测量值,包括R的角度依赖性。使用纳米多孔SiO / sub 2 /的三层反射器的角度积分TE / TM平均反射率是99.4%。这是内部ODR有史以来最高的平均反射率。三层ODR的镜面损耗比常规金属反射镜的镜面损耗低7倍。结果表明ODR对于具有高光提取效率的发光二极管具有巨大的潜力。

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