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Photonic crystals for optimal color conversion in light-emitting diodes: a semi-analytical approach

机译:发光二极管中最佳颜色转换的光子晶体:半分析方法

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Based on effective-medium approximation, we analytically optimize the color conversion of GaN-based lightemitting p -n junctions, with respect to the size and spatial density of the used photonic crystals (PhCs), being filled with quantum dots (QDs). The model is two-dimensional and the incoherent excitation into the multiple quantum wells is mimicked by line sources of random electric and magnetic currents. Optimal operation is achieved by suppressing the radiation extraction for one visible color and simultaneously maximizing the emission for another color. For these cases, the field gets inevitably concentrated into the PhCs of QDs, where the conversion occurs, and the performance of the device is maximized. Several examples from these ultra-performing designs are provided, within which a secondary sweep can be applied by posing extra constraints related to cost or ease of fabrication. (C)d 2018 Optical Society of America.
机译:基于有效介质近似,我们分析了针对使用量子点(QDS)的尺寸和空间密度来分析基于GaN的发光P-N结的颜色转换。 该模型是二维的,并且通过随机电流的线源模拟多量子阱的非相干激发。 通过抑制一种可见颜色的辐射提取来实现最佳操作,并同时最大化其他颜色的发射。 对于这些情况,该领域不可避免地集中到QD的PHC中,在那里发生转换,并且设备的性能最大化。 提供来自这些超级性设计的几个例子,在该实例内,可以通过构成与成本或易于制造相关的额外约束来施加二次扫描。 (c)D 2018美国光学学会。

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