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Flower-like light distribution inside InGaN-based light-emitting diodes operated in spectral range from violet to red

机译:InGaN基发光二极管内部的花朵状光分布在从紫色到红色的光谱范围内运行

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Nowadays, phosphor-based light-emitting diodes (LEDs) with InGaN/GaN quantum wells (QWs) are commonly used for white light sources [1]. However, degradation of phosphor material during long-term optical pumping is inevitable, resulting that output efficiency and color-rendering index of white LEDs are significantly reduced. Therefore, a phosphor-free white LED realized by directly mixing three primary colors is considered as a good alternative to improve device performances. For the fabrication of phosphor-free white LEDs using InGaN-based QWs, the growth of InGaN emitting in the wavelength above ~550 nm is currently required. To extend the emission wavelength of InGaN to red spectral range, indium (In) content should be increased. However, it is difficult to grow high-quality InGaN with high In content mainly due to intrinsic phase separation of InN and GaN [2]. In this work, we report device characteristics of yellow-red LEDs, where the active InGaN-based QWs were prepared by a new growth technique. And then, the lateral and vertical light distribution inside the LEDs operated in the spectral range from violet to red will be discussed with theoretical analysis. We also present phosphor-free white LEDs realized by monolithic integration of InGaN-based QWs emitting narrow blue, green, and red spectra.
机译:如今,具有InGaN / GaN量子阱(QW)的基于磷的发光二极管(LED)通常用于白光源[1]。然而,在长期的光泵浦期间不可避免地磷光体材料的降解,导致白色LED的输出效率和显色指数显着降低。因此,通过直接混合三种原色实现的无磷白光LED被认为是改善器件性能的良好选择。对于使用基于InGaN的QW来制造无荧光粉的白色LED,目前需要生长在约550 nm以上波长发射的InGaN。为了将InGaN的发射波长扩展到红色光谱范围,应增加铟(In)的含量。但是,主要由于InN和GaN的固有相分离,很难生长具有高In含量的高质量InGaN [2]。在这项工作中,我们报告了黄红色LED的器件特性,其中通过一种新的生长技术制备了基于有源InGaN的QW。然后,将通过理论分析来讨论在紫到红光谱范围内工作的LED内部的横向和垂直光分布。我们还介绍了通过单片集成基于InGaN的QW实现无荧光粉的白色LED,这些QW发出窄的蓝色,绿色和红色光谱。

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