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Optimizing textured structures possessing both optical gradient and diffraction properties to increase the extraction efficiency of light-emitting diodes

机译:优化同时具有光学梯度和衍射特性的纹理结构,以提高发光二极管的提取效率

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The external quantum efficiency of a light-emitting diode (LED) is strictly limited by total internal reflection and Fresnel reflection effects. In this study, we sought to optimize light extraction by monitoring the shape effects of four kinds of periodic textured structures (nanorod, inverted rod, pyramid, inverted pyramid) on the surface of gallium nitride (GaN)-based LEDs. We employed the three-dimensional rigorous coupled waves approach to calculate the direct emissions at different incident angles on the various textured structures, and then determined an optimized structure that would improve the extraction efficiency of LEDs. The optical gradient of the inverted pyramid structure could decrease not only the Fresnel reflection at incident angles less than the critical angle but also the total internal reflection at incident angles greater than the critical angle. Many inverted pyramid structures at the GaN-air interface, with various sizes and periods, provided enhancement factors of greater than 150%.
机译:发光二极管(LED)的外部量子效率受到全内反射和菲涅耳反射效应的严格限制。在这项研究中,我们试图通过监视氮化镓(GaN)基LED表面上的四种周期性纹理结构(纳米节,倒杆,金字塔,倒金字塔)的形状效果来优化光提取。我们使用三维严格耦合波方法来计算各种纹理结构在不同入射角下的直接发射,然后确定可以提高LED提取效率的优化结构。倒金字塔结构的光学梯度不仅可以减小入射角小于临界角的菲涅耳反射,而且可以减小入射角大于临界角的全内反射。 GaN-空气界面处的许多倒金字塔结构,具有各种尺寸和周期,提供的增强因子大于150%。

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