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Enhanced external quantum efficiency in GaN-based vertical-type light-emitting diodes by localized surface plasmons

机译:通过局部表面等离子体激元提高GaN基垂直型发光二极管的外部量子效率

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摘要

Enhancement of the external quantum efficiency of a GaN-based vertical-type light emitting diode (VLED) through the coupling of localized surface plasmon (LSP) resonance with the wave-guided mode light is studied. To achieve this experimentally, Ag nanoparticles (NPs), as the LSP resonant source, are drop-casted on the most top layer of waveguide channel, which is composed of hydrothermally synthesized ZnO nanorods capped on the top of GaN-based VLED. Enhanced light-output power and external quantum efficiency are observed, and the amount of enhancement remains steady with the increase of the injected currents. To understand the observations theoretically, the absorption spectra and the electric field distributions of the VLED with and without Ag NPs decorated on ZnO NRs are determined using the finite-difference time-domain (FDTD) method. The results prove that the observation of enhancement of the external quantum efficiency can be attributed to the creation of an extra escape channel for trapped light due to the coupling of the LSP with wave-guided mode light, by which the energy of wave-guided mode light can be transferred to the efficient light scattering center of the LSP.
机译:研究了通过将局部表面等离子体激元(LSP)共振与波导模式光耦合来增强GaN基垂直型发光二极管(VLED)的外部量子效率。为了通过实验实现这一目标,将银纳米颗粒(NPs)作为LSP谐振源滴铸在波导通道的最顶层,该通道由盖在GaN基VLED顶部的水热合成ZnO纳米棒组成。观察到增强的光输出功率和外部量子效率,并且增强的量随着注入电流的增加而保持稳定。为了从理论上理解这些观察结果,使用有限差分时域(FDTD)方法确定了在ZnO NR上装饰有和未装饰有Ag NP的VLED的吸收光谱和电场分布。结果证明,由于LSP与波导模式光的耦合,外部量子效率提高的观察结果可归因于为捕获的光产生了额外的逃逸通道,由此波导模式的能量得以释放。可以将光传输到LSP的有效光散射中心。

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