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首页> 外文期刊>Journal of Optical Communications >Linewidth Enhancement Factor and Amplification of Angle-Modulated Optical Signals in Injection-Locked Quantum Cascade Lasers
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Linewidth Enhancement Factor and Amplification of Angle-Modulated Optical Signals in Injection-Locked Quantum Cascade Lasers

机译:注入锁定量子级联激光器中的线宽增强因子和角度调制光信号的放大

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摘要

This paper presents a nonlinear analysis of the effect of linewidth enhancement factor (LEF) on the amplification of angle-modulated optical signals in injection-locked mid-infrared (IR) quantum cascade lasers (QCLs). A higher value of LEF tends to conserve the output angle modulation index of the amplified mid-IR signal particularly in the low-modulation frequency region. Further, a higher value of signal injection ratio produces a wider bandwidth of the locked QCL amplifier. The LEF introduces asymmetry in the lockband (LB) of the injection-locked QCL and this asymmetry increases with the increase in the value of LEF. Typically ratio of calculated lower-side LB to upper-side LB for an injection power level of - 20 dB and a LEF of unity is 1.67. The electron relaxation time in the uppermost subband lasing level in a three-level system has a profound effect on the LB asymmetry in a QCL.
机译:本文对线宽增强因子(LEF)对注入锁定中红外(IR)量子级联激光器(QCL)中的角度调制光信号的放大效果进行了非线性分析。较高的LEF值倾向于保存放大的中红外信号的输出角度调制指数,尤其是在低调制频率区域。此外,较高的信号注入比值会产生锁定QCL放大器的较宽带宽。 LEF在注入锁定QCL的锁带(LB)中引入了不对称性,并且该不对称性随LEF值的增加而增加。通常,对于-20 dB的注入功率水平和1的LEF,计算出的下侧LB与上侧LB之比为1.67。三能级系统中最高子带激光能级中的电子弛豫时间对QCL中的LB不对称性有深远的影响。

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