Rate Equation-based Modeling of Steady-state and Transient Performance Characteristics and High Frequency Modulation Response of Single Layer Transition metal Dichalcogenide Excitonic Lasers

Md. Asaduz Zaman Mamun, MD. Shakil Mahmud Jiban, Md. Shariful Islam, Abdullah Al Mohaimen
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Abstract

The mechanical exfoliation of single layer transition metal dichalcogenides opens a new window in the research arena related to the application of two-dimensional materials in exciton laser technology. In this present study, we have parameterized and theoretically solved semiconductor rate equation for single layer Transition metal Dichalcogenides (TMDs) [$WS_{2}, {WSe}_{2}$ and ${MoTe}_{2}]$ exciton lasers. We have computed the threshold exciton density and also the variation of output photon flux density with the changes of input current density for different coupling factors. To explore the high frequency performance of TMD exciton lasers, we have reported high frequency modulation response of the exciton lasers considered in this study. To have a better comparative insight into the high frequency performance of these lasers, we have also calculated intrinsic and -3dB bandwidth, modulation efficiency and differential gain of $WS_{2}, {WSe}_{2}$ and ${MoTe}_{2}$ excitonic lasers. The high bandwidth for TMD exciton lasers found in this present study denotes the potential excellance of using these lasers in high frequency optical communication applications. Our rate equation based theoretical modeling in this study would be helpful for further investigation of different aspects of TMD exciton laser characteristics.
基于速率方程的单层过渡金属双硫化物激子激光器稳态和瞬态性能特性及高频调制响应建模
单层过渡金属二硫族化合物的机械剥离为二维材料在激子激光技术中的应用开辟了新的研究领域。在本研究中,我们对单层过渡金属二硫族化合物(TMDs) [$WS_{2}, {WSe}_{2}$和${MoTe}_{2}]$激子激光器的半导体速率方程进行了参数化和理论求解。计算了不同耦合系数下的激子阈值密度和输出光子通量密度随输入电流密度变化的变化。为了探索TMD激子激光器的高频性能,我们报道了本研究中考虑的激子激光器的高频调制响应。为了更好地比较这些激光器的高频性能,我们还计算了$WS_{2}}、{WSe}_{2}$和${MoTe}_{2}$激子激光器的本征带宽和-3dB带宽、调制效率和差分增益。在本研究中发现的TMD激子激光器的高带宽表明了这些激光器在高频光通信应用中的潜在优势。本研究基于速率方程的理论建模有助于进一步研究TMD激子激光特性的各个方面。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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