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Numerical analysis of suppression effects on optical feedback noise by superposition of high frequency current in semiconductor lasers

机译:半导体激光器中高频电流叠加抑制光反馈噪声的数值分析

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摘要

Semiconductor lasers tend to suffer from the optical feedback (OFB) noise caused by the reflection of the output light at the surface of the optical disc or the optical fiber. Superposition of high frequency (HF) current is used as a technique to suppress the OFB noise. However, this is not effective when the frequency of the HF current coincides with a rational number of the round trip time for the OFB. This paper shows numerical simulations on the phenomena of the OFB noise, its suppression by the superposition of HF current and conditions at which the HF current is unable to suppress the noise. The model used here is based on multimode rate equations that include nonlinear gain, Langevin noise sources, the OFB, and the HF superposition. Generating mechanism of the OFB noise and its suppression are explained with approximated but analytical equations. Excellent correspondence between experimental data and simulation is also demonstrated. © 1965-2012 IEEE.
机译:半导体激光器趋于遭受由输出光在光盘或光纤表面的反射所引起的光反馈(OFB)噪声。高频(HF)电流的叠加被用作抑制OFB噪声的技术。但是,当HF电流的频率与OFB的往返时间的合理数量一致时,此方法无效。本文显示了关于OFB噪声现象的数值模拟,通过HF电流的叠加来抑制OFB噪声以及HF电流无法抑制噪声的条件。此处使用的模型基于多模速率方程,其中包括非线性增益,Langevin噪声源,OFB和HF叠加。用近似但解析的方程式解释了OFB噪声的产生机理及其抑制。实验数据和模拟之间也显示出极好的对应关系。 ©1965-2012 IEEE。

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