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Dynamics of a semiconductor laser with frequency shifted feedback

机译:具有频移反馈的半导体激光器的动力学

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摘要

Dynamics of the output of a semiconductor laser with frequency-shifted optical feedback system is systematically analyzed. Results from experimental studies using an 830 nm, QW, Fabry-Perot cavity, semiconductor laser are reported. The dynamics are mapped as a function of the level of frequency shifted feedback (FSF) and the injection current. The frequency shift of the optical feedback is the fundamental or a sub-harmonic of the external cavity frequency in the experiments. Multi-GHz-bandwidth real time data collection and analysis is used to investigate the temporal and spectral behaviour of the output power of the nonlinear system. The results are contrasted with those from conventional semiconductor laser with optical feedback systems. Three fundamentally different regimes of operation are identified for the FSF system corresponding to low, medium and high levels of FSF. The low and medium level FSF regimes are consistent with those found in the semiconductor with conventional optical feedback system. It is only when high levels of FSF are used that the output gives a noisy, near periodic output which is similar to the pulsed comb of mode output observed in analogous FSF laser systems using solid state gain media when the FSF is resonant.
机译:系统分析了带有频移光反馈系统的半导体激光器的输出动力学。报告了使用830 nm,QW,Fabry-Perot腔半导体激光器进行实验研究的结果。动力学映射为频移反馈(FSF)和注入电流水平的函数。在实验中,光反馈的频移是外腔频率的基本或次谐波。多GHz带宽实时数据收集和分析用于研究非线性系统输出功率的时间和频谱行为。结果与具有光反馈系统的传统半导体激光器的结果形成对比。对于FSF系统,确定了三种基本不同的操作方式,分别对应于FSF的低,中和高水平。低级和中级FSF体制与采用常规光反馈系统的半导体中的体制一致。只有当使用高水平的FSF时,输出才会产生有噪声的接近周期性的输出,这类似于在FSF谐振时使用固态增益介质的类似FSF激光系统中观察到的模式输出的脉冲梳。

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