采用亚微米菲涅耳透镜阵列,提高了GaN-LED的光提取效率和散射角

X. Gu, Linsen Chen, S. Shen, Wenqiang Wan
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引用次数: 2

摘要

随着人们对光源的要求越来越高,发光二极管(LED)以其功耗低、可靠性高、寿命长等固有优势越来越受到人们的关注。然而,LED有两个缺点,一是由于全内反射导致的光提取效率低,二是散射角相对较大。为了提高光提取效率和准直外耦合光,本文介绍并研究了一种亚微米菲涅耳透镜阵列。该菲涅耳透镜的焦距为3μm,最外圈的最小宽度约为150nm。为了计算和分析采用这种菲涅耳透镜阵列结构的LED的光提取效率和散射角,利用时域有限差分法(FDTD)对菲涅耳透镜阵列结构的深度和p型氮化镓层的厚度等参数进行了优化。通过与传统平面LED进行对比,发现采用这种新型菲涅耳透镜结构的氮化镓图像化LED的光提取效率提高了3.5倍,最大散射角从60°降低了50°。预计所提出的亚微米结构将在led工业中得到广泛的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Both improvements of the light extraction efficiency and scattered angle of GaN-LED using sub-micron Fresnel lens array
With the demanding requirements for light source, light emitting diodes (LED) attracts more and more attention because of its inherent advantages such as low power consumption, high reliability and longevity. However, there are two disadvantages for LED, one is the low light extraction efficiency resulting from the total internal reflection, and the other is the relative large scattered angle. In order to improve the light extraction efficiency and collimate the out-coupling light, a sub-micron Fresnel lens array is introduced and investigated in this paper. The focal length of the proposed Fresnel lens is 3μm and the minimum width of the outmost ring is about 150nm. To calculate and analyze the light extraction efficiency and the scattered angle of LED with such Fresnel lens array structure, we optimize the parameters of the Fresnel lens, such as the depth of the Fresnel lens array structure and the thickness of the p-type gallium nitride layer by using the finite difference time domain method (FDTD). By comparing the discussed patterned GaN-based LED with that traditional flat LEDs, it can be found that significant enhancement factor of the light extraction efficiency, which is improved by 3.5 times, can be obtained and the scattered angle at half maximum can be decreased 50° from 60° with this novel Fresnel lens structure. It will be expected that the proposed sub-micron structure can find wide applications in LEDs industry.
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