多模竞争对量子点发光二极管动力学的影响

Q3 Engineering Journal of Optical Communications Pub Date : 2023-07-17 DOI:10.1515/joc-2023-0131
Hawraa A. Hussein, H. A. Al Husseini
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引用次数: 0

摘要

摘要快速模式竞争现象对半导体量子点发光二极管(QDLED)动力学的影响是本研究的理论研究主题。分析基于叠加多模速率方程的数值模拟,该方程考虑了与自发发射相关的固有波动。在多模源的数值生成过程中,模式光子数和注入电子数保持相关。在自洽模型的基础上,引入了光频w效应,该效应导致了光照模式之间的竞争现象。模式竞争现象被用来解释噪声源是如何影响它的。模式竞争过程导致模式强度变化之间的瞬时耦合,从而导致模式动力学的不稳定性并改变操作状态。在宽范围的载流子和光子率(包括威廷层(WL)进入点的捕获率、光学模式中的光子输出率以及QD和WL中载流子数量的非辐射衰减率)上,研究了模式的动力学和输出光谱的特性。有三种操作类型可区分:抖动单模、稳定单模和稳定多模。
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Influence of multi-modes contest on the dynamics of a quantum dot light emitting diode
Abstract The effects of quick mode-competition phenomena on the dynamics of semiconductor quantum dot light-emitting diode (QDLED) are the subject of theoretical investigations in this study. The analyses are based on numerical simulations of the superposed multi-mode rate equations, which take into account the inherent fluctuations related to the spontaneous emission. The modal photon number and the injected electron number are reserved correlated during the multimode sources’ numerical generating process. Based on a self-consistent model, the optical frequency w effects which result in competition phenomena among lighting modes are introduced. The phenomenon of mode-competition is used to explain how noise sources affect it. Mode-competition processes cause instantaneous coupling between variations in mode intensity, which leads to instability in the dynamics of the modes and changes the state of operation. Over a broad range of carriers and photon rates (including the capture rate of the witting layer (WL) into the dot, the photon output rate in the optical mode, and the nonradiative decay rates of the number of carriers in the QD and WL), the dynamics of modes and the characteristics of the output spectrum are investigated. Three types of operation are distinguished: jittering single mode, stable single mode, and stable multimode.
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来源期刊
Journal of Optical Communications
Journal of Optical Communications Engineering-Electrical and Electronic Engineering
CiteScore
2.90
自引率
0.00%
发文量
86
期刊介绍: This is the journal for all scientists working in optical communications. Journal of Optical Communications was the first international publication covering all fields of optical communications with guided waves. It is the aim of the journal to serve all scientists engaged in optical communications as a comprehensive journal tailored to their needs and as a forum for their publications. The journal focuses on the main fields in optical communications
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