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Light Extraction Analysis of AlGaInP Based Red and GaN Based Blue/Green Flip-Chip Micro-LEDs Using the Monte Carlo Ray Tracing Method

机译:蒙特卡洛射线追踪法对AlGaInP基红色和GaN基蓝/绿倒装芯片微型LED的光提取分析

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摘要

Micro-scale light emitting diodes (micro-LEDs) commonly employ a thin-film flip-chip (TFFC) structure whose substrate is lifted off by an excimer laser. However, flip-chip (FC) micro-LEDs with a substrate can provide a sharp rise on sidewall emission by increasing the sidewall area. Here, we investigate the influence of substrate thickness, encapsulation, surface texture, microstructures between the substrate and epilayer, as well as the size, cutting shape, and angle of the chip on the light extraction efficiencies (LEEs) of FC micro-LEDs by using the Monte Carlo ray tracing method. We find that the LEE of the blue FC micro-LED chip increases by 46.5% over that of the blue TFFC micro-LED chip. After the encapsulation with the epoxy lens is applied, the LEEs of the blue TFFC micro-LED and blue FC micro-LED increase by 129% and 110.5%, respectively. The underlying mechanisms for the use of surface texture, patterned sapphire substrate, air-void array, and chip shaping technologies to improve the LEEs of FC micro-LEDs are also investigated in detail. We find that the LEEs AlGaInP based red FC micro-LED and GaN based blue/green FC micro-LEDs exhibit a sharp rise when the chip size drops from 30 to 10 µm. The inverted trapezoid FC micro-LED with patterned sapphire substrate (PSS) and encapsulation shows extraordinarily strong top emission and high collimation. We believe that our study offers a promising and practical route for obtaining high efficiency micro-LEDs.
机译:微型发光二极管(micro-LED)通常采用薄膜倒装芯片(TFFC)结构,其衬底由受激准分子激光器提离。但是,带有基板的倒装芯片(FC)微型LED可以通过增加侧壁面积来大幅增加侧壁发射。在这里,我们研究了基板厚度,封装,表面纹理,基板与外延层之间的微结构以及芯片的尺寸,切割形状和角度对FC micro-LED的光提取效率(LEE)的影响。使用蒙特卡洛射线追踪方法。我们发现,蓝色FC micro-LED芯片的LEE值比蓝色TFFC micro-LED芯片的LEE值提高了46.5%。应用环氧透镜进行封装后,蓝色TFFC微型LED和蓝色FC微型LED的LEEE分别增加了129%和110.5%。还详细研究了使用表面纹理,图案化的蓝宝石衬底,气孔阵列和芯片成形技术来改善FC micro-LED的LEEE的潜在机制。我们发现,当芯片尺寸从30 µm下降至10 µm时,基于LEEs AlGaInP的红色FC micro-LED和基于GaN的蓝/绿色FC micro-LED呈现出急剧上升的趋势。具有图案化蓝宝石衬底(PSS)和封装的倒梯形FC micro-LED显示出异常强的顶部发射和高准直度。我们相信我们的研究为获得高效的微型LED提供了有希望的实用途径。

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