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Surface-plasmon-coupled emission enhancement of a quantum well with a metal nanoparticle embedded in a light-emitting diode

机译:金属纳米粒子嵌入发光二极管中的量子阱的表面等离子体激元耦合发射增强

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摘要

The coupling behavior of an InGaN/GaN quantum well (QW), which is assumed to consist of an array of radiating dipoles, with the induced localized surface plasmon (LSP) resonance on an Ag nanosphere (NS) embedded in the p-type layer of a nitride light-emitting diode is demonstrated. The numerical study of the coupling behavior of an individual radiating dipole is based on an algorithm, which takes account of the induction of LSP resonance on the Ag NS by the radiating dipole and the feedback of the LSP resonance to the behavior of the radiating dipole. In this study, we first evaluate the enhancements of dipole strength and radiated power in such a coupling process for the dipoles oriented along the radial and orbital directions with respect to the Ag NS under the conditions of different distances between the radiating dipole and Ag NS. Then, the QW coupling effect is obtained through the superposition of those of the individual dipoles in the array. It is found that both the LSP dipole resonance and higher-order resonance can contribute significant radiated power enhancements to the QW-LSP coupling system.
机译:假设InGaN / GaN量子阱(QW)的耦合行为由辐射偶极子阵列组成,并且在嵌入p型层的Ag纳米球(NS)上引起局部表面等离子体激元(LSP)共振对氮化物发光二极管的结构进行说明。单个辐射偶极子耦合行为的数值研究基于一种算法,该算法考虑了辐射偶极子在Ag NS上诱导LSP共振以及LSP共振对辐射偶极子行为的反馈。在这项研究中,我们首先评估在辐射偶极子与Ag NS距离不同的情况下,相对于Ag NS沿径向和轨道方向定向的偶极子的耦合过程中偶极子强度和辐射功率的增强。然后,通过阵列中各个偶极子的叠加获得QW耦合效应。已经发现,LSP偶极谐振和高阶谐振都可以为QW-LSP耦合系统带来显着的辐射功率增强。

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