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The Green’s Function Description of Emission Enhancement in Grated LED Structures

机译:磨碎LED结构中Green的增强发射功能的功能描述

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摘要

Using scattering to improve light extraction from semiconductors is a widely adopted method to increase the efficiency of modern light-emitting devices. Recently, there has also been much interest in the potential emission enhancement provided by the strong coupling between surface plasmons and semiconductor emitters. In this study, we develop a Green’s function-based model to describe the emission enhancement and modification in optical properties obtained as a result of scattering and plasmon engineering. The Green’s function method is used to answer fundamental questions regarding luminescence enhancement in periodically grated GaN light-emitting structures. The Green’s function approach is a very attractive analytical method to studying the emission properties of grated multilayer structures, providing insight beyond numerical solutions. Modeling results from reflectometry measurements of silver-grated GaN structures allows to explain experimentally observed interference features. A discussion regarding the role of periodic grating in enhancing emission from the structures is included.
机译:使用散射来改善从半导体的光提取是提高现代发光器件效率的一种广泛采用的方法。近来,人们还非常关注表面等离子体激元与半导体发射极之间的强耦合所提供的潜在发射增强。在这项研究中,我们开发了一种基于格林函数的模型,以描述由于散射和等离激元工程学而获得的光学特性的发射增强和修饰。格林函数方法用于回答有关周期性磨碎的GaN发光结构中的发光增强的基本问题。格林函数方法是一种非常有魅力的分析方法,用于研究磨碎的多层结构的发射特性,提供了超越数值解法的见识。银碎GaN结构的反射测量结果的建模结果可以解释实验观察到的干涉特征。包括有关周期性光栅在增强结构发射方面的作用的讨论。

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