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A Two-Dimensional Photonic Crystal Structure for Improving Efficiency of Pbs Quantum Dots Electroluminescence Devices

机译:一种提高PBS量子点电致发光器件效率的二维光子晶体结构

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In this research, a triangular two-dimensional (2D) photonic crystal (PC) was hypothetically introduced into the active layer of a PbS quantum dots (QDs) electroluminescent (EL) device. The attributes of the photonic band gap effect and diffraction effect were considered and evaluated for device performance improvement. We designed and optimized the 2D-PC structure parameters to enhance the emission intensity at wavelength 1124 nm. The optimal structure parameter of PC is determined by normalized radius of r/a=0.49 and lattice constant of a=540 nm when the thickness of PC slab h is 74 nm. The 3D stimulation view of light propagation validates and supports the proposed strategy. The results provide a theoretical prediction for ideal PbS QDs-based EL device.
机译:在该研究中,假设三角形二维(2D)光子晶体(PC)被假设进入PBS量子点(QDS)电致发光(EL)装置的有源层。考虑了光子带隙效应和衍射效果的属性,并评估了器件性能改进。我们设计并优化了2D-PC结构参数,以增强波长1124nm处的发光强度。 PC的最佳结构参数由R / A = 0.49的常规半径和当PC板H的厚度为74nm时的α= 540nm的晶格常数确定。光传播的3D刺激视图验证并支持所提出的策略。结果为理想的PBS QDS基EL器件提供了理论预测。

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