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Self-assembled indium tin oxide nanoball-embedded omnidirectional reflectors for high photon extraction efficiency in III-nitride ultraviolet emitters

机译:自组装铟锡氧化物nanoball-embedded全向反射光子高萃取效率III-nitride紫外线发射器

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摘要

The control of the refractive index and electrical conductivity in the dielectric layer of omnidirectional reflectors (ODRs) is essential to improve the low efficiency of AIGaN-based UV emitters. Here, we report self-assembled indium tin oxide (ITO) nanoball-embedded omnidirectional reflectors (NODRs) for use in high-efficiency AIGaN-based UV emitters at 365 nm. These NODRs consisted of a reflective Al layer, a self-assembled conducting ITO nanoball layer for current injection and spreading, and nanovoids that provided a low refractive index to achieve highly efficient UV emitters. The NODR was able to realize both high electrical conductivity and reflectivity by decreasing the average refractive index of the ITO nanoball layers. We observed diffuse reflection as well as omnidirectional reflection from the NODR UV emitters because of the corrugated interfaces of the nanovoids, ITO nanoball layer, and Al layer. These structural and optical properties of the NODRs remarkably increased the output power of a UV emitter by a Lambertian enhancement factor of 57% at an injection current of 50 mA at all emission angles compared with that of an ITO film/Al UV emitter.
机译:折射率和电气的控制介电层的电导率全向反射镜(odr)是至关重要的改善AIGaN-based紫外线的低效率发射器。氧化锡(ITO) nanoball-embedded无方向性反射镜(NODRs)用于高效在365 nm AIGaN-based紫外线发射器。由一个反光铝层,自组装导电ITO nanoball层电流注入和传播,nanovoids提供一个低折射率来实现高效紫外线发射器。实现高导电性和反射率通过减少平均折射指数的ITO nanoball层。漫反射以及全方位从NODR紫外线发射器,因为反射的波纹接口nanovoids,伊藤nanoball层和铝层。和NODRs显著的光学特性增加一个紫外线发射器的输出功率在一个传感器的增强因子的57%注入电流50 mA的发射角度相比与ITO膜/紫外线发射器。

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