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Transmission line model for strained quantum well lasers including carrier transport and carrier heating effects

机译:应变量子孔激光器的传输线模型,包括载体运输和载体加热效果

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摘要

This paper reports a new model for strained quantum well lasers, which are based on the quantum well transmission line modeling method where effects of both carrier transport and carrier heating have been included. We have applied this new model and studied the effect of carrier transport on the output waveform of a strained quantum well laser both in time and frequency domains. It has been found that the carrier transport increases the turn-on, turn-off delay times and damping of the quantum well laser transient response. Also, analysis in the frequency domain indicates that the carrier transport causes the output spectrum of the quantum well laser in steady state to exhibit a redshift which has a narrower bandwidth and lower magnitude. The simulation results of turning-on transients obtained by the proposed model are compared with those obtained by the rate equation laser model. The new model has also been used to study the effects of pump current spikes on the laser output waveforms properties, and it was found that the presence of current spikes causes (i) wavelength blueshift, (ii) larger bandwidth, and (iii) reduces the magnitude and decreases the side-lobe suppression ratio of the laser output spectrum. Analysis in both frequency and time domains confirms that the new proposed model can accurately predict the temporal and spectral behaviors of strained quantum well lasers. (C) 2016 Optical Society of America
机译:本文报告了一种新的压力量子阱激光器,其基于量子阱传输线建模方法,其中包括载波运输和载体加热的影响。我们已经应用了这种新模型,并研究了载波运输对时间和频率畴的应变量子良好激光器输出波形的影响。已经发现,载流子传输增加了导通,关断延迟时间和量子孔激光瞬态响应的阻尼。而且,频域中的分析表明载波传输导致量子孔激光的输出频谱以稳态呈现稳态,以表现出具有较窄带宽和较低幅度的红移。将所提出的模型获得的接通瞬变的仿真结果与速率方程激光模型获得的那些进行比较。新模型还被用来研究泵电流尖峰对激光输出波形的影响,发现当前尖峰的存在导致(i)波长蓝光,(ii)较大的带宽,(iii)减少大小并降低激光输出谱的侧瓣抑制比。频率和时间域的分析证实新的提出模型可以准确地预测应变量子阱激光器的时间和光谱行为。 (c)2016年美国光学学会

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  • 来源
    《Applied optics》 |2016年第7期|共7页
  • 作者单位

    Univ Birmingham Sch Engn Birmingham B15 2TT W Midlands England;

    Univ Birmingham Sch Engn Birmingham B15 2TT W Midlands England;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
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