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Lateral-Polarity Structure of AlCaN Quantum Wells: A Promising Approach to Enhancing the Ultraviolet Luminescence

机译:AlCaN量子阱的横向极性结构:增强紫外发光的有前途的方法。

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摘要

Aluminum-gallium-nitride alloys (AlxGa1-xN, 0 = x = 1) can emit light covering the ultraviolet spectrum from 210 to 360 nm. However, these emitters have not fulfilled their full promise to replace the toxic and fragile mercury UV lamps due to their low efficiencies. This study demonstrates a promising approach to enhancing the luminescence efficiency of AlGaN multiple quantum wells (MQWs) via the introduction of a lateral-polarity structure (LPS) comprising both III and N-polar domains. The enhanced luminescence in LPS is attributed to the surface roughening, and compositional inhomogeneities in the N-polar domain. The space-resolved internal quantum efficiency (IQE) mapping shows a higher relative IQE in N-polar domains and near inversion domain boundaries, providing strong evidence of enhanced radiative recombination efficiency in the LPS. These experimental observations are in good agreement with the theoretical calculations, where both lateral and vertical band diagrams are investigated. This work suggests that the introduction of the LPS in AlGaN-based MQWs can provide unprecedented tunability in achieving higher luminescence performance in the development of solid state light sources.%1802395.1-1802395.10
机译:氮化铝镓合金(AlxGa1-xN,0 <= x <= 1)可以发出覆盖210至360 nm紫外光谱的光。但是,这些发射器由于效率低而不能完全兑现有毒和易碎的汞紫外线灯的更换承诺。这项研究表明,通过引入同时包含III和N极性域的横向极性结构(LPS),可以提高AlGaN多量子阱(MQW)的发光效率的一种有前途的方法。 LPS中增强的发光归因于表面粗糙和N极性域中的成分不均匀性。空间分辨内部量子效率(IQE)映射显示N极性域和反演域边界附近的相对IQE较高,为LPS中辐射重组效率增强提供了有力的证据。这些实验观察结果与理论计算非常吻合,在理论计算中均研究了横向和垂直带图。这项工作表明,在固态光源的开发中,在基于AlGaN的MQW中引入LPS可以提供​​前所未有的可调性,以实现更高的发光性能。%1802395.1-1802395.10

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