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Spectral Analysis of 1.55- $mu$m InAs–InP(113)B Quantum-Dot Lasers Based on a Multipopulation Rate Equations Model

机译:基于多种群速率方程模型的1.55-μmInAs-InP(113)B量子点激光器的光谱分析

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摘要

In this paper, a theoretical model is used to investigate the lasing spectrum properties of InAs–InP(113)B quantum dot (QD) lasers emitting at 1.55 $mu$m. The numerical model is based on a multipopulation rate equations analysis. Calculations take into account the QD size dispersion as well as the temperature dependence through both the inhomogeneous and the homogeneous broadenings. This paper demonstrates that the model is capable of reproducing the spectral behavior of InAs–InP QD lasers. Especially, this study aims to highlight the transition of the lasing wavelength from the ground state (GS) to the excited state (ES). In order to understand how the QD laser turns on, calculated optical spectra are determined for different cavity lengths and compared to experimental ones. Unlike InAs–GaAs QD lasers emitting at 1.3 $mu$m, it is shown that a continuous transition from the GS to the ES is exhibited because of the large inhomogeneous broadening comparable to the GS and ES lasing energy difference.
机译:在本文中,使用理论模型研究了以1.55μm发射的InAs-InP(113)B量子点(QD)激光器的激光光谱特性。数值模型基于多人口比率方程分析。计算考虑了QD尺寸的分散性以及不均匀和均匀加宽时的温度依赖性。本文证明了该模型能够再现InAs-InP QD激光器的光谱特性。特别是,这项研究旨在突出激光波长从基态(GS)到激发态(ES)的转变。为了了解QD激光器的开启方式,确定了不同腔长的计算光谱,并与实验进行了比较。与以1.3μm发射的InAs-GaAs QD激光器不同,研究表明,由于与GS和ES激光能量差相当的大的不均匀展宽,因此显示了从GS到ES的连续过渡。

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