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Recent results and latest views on microcavity LEDs

机译:微腔LED的最新结果和最新观点

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摘要

We are progressively approaching the physical limits of microcavity LEDs (MC-LEDs) for high brightness, high efficiency LEDs. They are promising high efficiency devices and they offer the very attractive prospect of full planar fabrication process. However, to compete with other high efficiency LED schemes, they need to approach or surpass the 50 % efficiency mark. We first explore the limits of planar MC-LEDs in both the GaAlInAsP and GaInAlN materials systems, and show that the single-step extraction limit is in the 40 % range at best, depending on the materials system used, with the largest part of the non-extracted light being emitted into guided modes. The waveguided light can itself be extracted by photon recycling, when the internal quantum efficiency is high. Otherwise, another extraction scheme for that light is provided by various photonic-crystal-assisted extraction schemes. Simple photonic crystals (PCs) appear to lack the omnidirectional extraction properties required. However, more rotation-invariant PCs like Archimedean tilings allow to obtain such extraction with added efficiencies already in the 10% range. We discuss the further improvements to such structures.
机译:我们正在逐步接近用于高亮度,高效率LED的微腔体LED(MC-LED)的物理极限。它们是有前途的高效器件,它们为整个平面制造工艺提供了非常诱人的前景。但是,要与其他高效LED方案竞争,它们需要接近或超过50%的效率指标。我们首先探讨了GaAlInAsP和GaInAlN材料系统中平面MC-LED的极限,并表明单步萃取极限最多在40%的范围内,具体取决于所使用的材料系统,其中最大部分是非提取的光被发射到引导模式。当内部量子效率高时,可以通过光子循环来提取波导光本身。否则,通过各种光子晶体辅助的提取方案提供用于该光的另一种提取方案。简单的光子晶体(PC)似乎缺乏所需的全向提取特性。但是,更多的旋转不变的PC(例如Archimedean拼贴)可以实现这种提取,并且效率已经在10%的范围内。我们讨论了对此类结构的进一步改进。

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