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Enhancing the light extraction efficiency of AlGaN LED with nanowire photonic crystal and graphene transparent electrode

机译:纳米线光子晶体和石墨烯透明电极提高AlGaN LED的光提取效率

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The performance of AlGaN deep ultraviolet(UV) light emitting diodes(LEDs) has been limited by the extremely low light extraction efficiency(LEE), which is due to the severe light absorption by metal electrode and unique transverse magnetic polarization. Here, we propose an ordered nanowire array structure UV-LEDs with transparent graphene electrode. By using the finite-difference time domain simulation, the relationship between LEE and different nanowire structures (including ordered and disordered nanowires array) was studied. We demonstrate that ordered nanowire arrays are better than disordered nanowires in improving the LEE. A high LEE about 80% can, in principle, be expected from top surface with optimized nanowire radius and spacing. In addition, by studying the distribution of electric field intensity on the side and top of UV-LEDs with graphene electrode and Ni/Au electrode, we show that the graphene electrode can reduce the absorption of ultraviolet light and improve LEE more effectively than the conventional Ni/Au electrode. This proposed structure could be a promising candidate for high light extraction efficiency UV-LEDs.
机译:AlGaN深紫外(LED)的性能受到极低的光提取效率(LEE)的限制,这是由于金属电极对光的吸收严重以及独特的横向磁极化引起的。在这里,我们提出了一种具有透明石墨烯电极的有序纳米线阵列结构UV-LED。通过使用时域有限差分模拟,研究了LEE与不同纳米线结构(包括有序和无序纳米线阵列)之间的关系。我们证明有序纳米线阵列在改善LEE方面比无序纳米线更好。原则上,可以从具有最佳纳米线半径和间距的顶表面获得约80%的高LEEE。此外,通过研究带有石墨烯电极和Ni / Au电极的UV-LED的侧面和顶部的电场强度分布,我们发现该石墨烯电极与常规方法相比可以减少紫外光的吸收并更有效地改善LEE镍/金电极。提出的结构可能是高光提取效率的UV-LED的有希望的候选者。

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