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Light extraction in planar light-emitting diode with nonuniform current injection: model and simulation

机译:电流注入不均匀的平面发光二极管的光提取:模型与仿真

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摘要

We develop an analytical and numerical model for performing simulation of light extraction through the planar output interface of the light-emitting diodes (LEDs) with nonuniform current injection. Spatial nonuniformity of injected current is a peculiar feature of the LEDs in which top metal electrode is patterned as a mesh in order to enhance the output power of light extracted through the top surface. Basic features of the model are the bi-plane computation domain, related to other areas of numerical grid (NG) cells in these two planes, representation of light-generating layer by an ensemble of point light sources, numerical "collection" of light photons from the area limited by acceptance circle and adjustment of NG-cell areas in the computation procedure by the angle-tuned aperture function. The developed model and procedure are used to simulate spatial distributions of the output optical power as well as the total output power at different mesh pitches. The proposed model and simulation strategy can be very efficient in evaluation of the output optical performance of LEDs with periodical or symmetrical configuration of the electrodes.
机译:我们开发了一个分析模型和数值模型,用于通过不均匀电流注入通过发光二极管(LED)的平面输出接口进行光提取的仿真。注入电流的空间不均匀性是LED的特有特征,其中顶部金属电极被图案化为网格,以增强通过顶部表面提取的光的输出功率。该模型的基本特征是双平面计算域,与这两个平面中的数字网格(NG)单元的其他区域相关,通过点光源的集合表示光生成层,对光子进行数值“收集”通过角度调谐孔径函数在计算过程中从受验圆限制的区域和NG单元区域的调整中选择。所开发的模型和过程用于模拟输出光功率的空间分布以及不同网格间距下的总输出功率。所提出的模型和仿真策略可以非常有效地评估具有周期性或对称电极配置的LED的输出光学性能。

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