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A New model of analysis of semiconductor laser dynamics under strong optical feedback in fiber communication systems

机译:光纤通信系统强光反馈下半导体激光动力学分析的新模型

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We report on a new model of analysis in semiconductor laser dynamics under strong optical feedback (OFB) in fiber communication systems. The model treats the optical feedback due to reflection of the laser light on an external fiber grating as a time-delayed optical field injected to the laser cavity. The model is versatile applicable to an arbitrary strength of optical feedback ranging from weak to strong. The model is applied to stimulate output characteristics and intensity noise in InGaAs lasers pumping fiber amplifiers in a wavelength of 980 nm. Influence of intrinsic fluctuations in the intensity and optical phase of the lasing field on the laser dynamics is taken into account. The time-varying trajectories of the output power are presented over a wide range of the injection current. The simulation results indicated that the laser mainly operates in pulsation under strong optical feedback. Counting the intrinsic fluctuations was found to reduce the OFB-induced instabilities so as to bring the laser faster to its steady state operation. The optical feedback noise is found to be as low as the quantum noise level when the laser is injected well above its threshold level.
机译:我们在半导体激光动力学分析的下光纤通信系统的光强反馈(OFB)的新模型报告。该模型将光学反馈由于在外部光纤光栅作为一个时间延迟的光场的激光的反射注入到激光腔。该模型是通用的适用于光反馈,从弱到强的随意性强。该模型适用于刺激的InGaAs激光器泵浦的光纤放大器在980nm的波长的输出特性和强度的噪声。在强度和对激光动力学激射场的光学相位波动固有的影响被考虑在内。的输出功率的时间变化的轨迹都在很宽的范围内的注入电流。仿真结果表明,激光主要工作在脉动下强的光反馈。计数的内在波动被发现,以减少OFB引起的不稳定性,从而使激光更快的稳态运行。光反馈噪声被发现是低的量子噪声电平,当激光器被高于其阈值水平注入井。

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