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Light interaction in sapphire/MgF2/Al triple-layer omnidirectional reflectors in AlGaN-based near ultraviolet light-emitting diodes

机译:AlGaN基近紫外发光二极管中蓝宝石/ MgF2 / Al三层全向反射器中的光相互作用

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摘要

This study examined systematically the mechanism of light interaction in the sapphire/MgF2/Al triple-layer omnidirectional reflectors (ODR) and its effects on the light output power in near ultraviolet light emitting diodes (NUV-LEDs) with the ODR. The light output power of NUV-LEDs with the triple-layer ODR structure increased with decreasing surface roughness of the sapphire backside in the ODR. Theoretical modeling of the roughened surface suggests that the dependence of the reflectance of the triple-layer ODR structure on the surface roughness can be attributed mainly to light absorption by the Al nano-structures and the trapping of scattered light in the MgF2 layer. Furthermore, the ray tracing simulation based upon the theoretical modeling showed good agreement with the measured reflectance of the ODR structure in diffuse mode.
机译:这项研究系统地研究了蓝宝石/ MgF2 / Al三层全向反射器(ODR)中光相互作用的机理及其对具有ODR的近紫外发光二极管(NUV-LED)中光输出功率的影响。具有三层ODR结构的NUV-LED的光输出功率随着ODR中蓝宝石背面的表面粗糙度的减小而增加。粗糙表面的理论模型表明,三层ODR结构的反射率对表面粗糙度的依赖性主要归因于Al纳米结构的光吸收和MgF2层中的散射光捕获。此外,基于理论模型的光线追踪仿真与漫反射模式下的ODR结构的反射率显示出良好的一致性。

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