Numerical Analysis of Distortions in Directly Modulated Semiconductor Lasers in the Presence of Weak Optical Feedback

M. K. Haldar, F. Mendis, J. Wang
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Abstract

Subcarrier multiplexed (SCM) optical communication systems have been studied by many researchers for their attractiveness in providing simple, low-cost and broad-band optical fibre communications. In practical SCM systems, some light unintentionally fed back into the laser diode through various discontinuities such as splices adversely affect the performance of directly modulated semiconductor lasers. Many studies have been done carried out both theoretically and experimentally[1-4]. Using small signal perturbation method, Helms[2] gave expressions for modulation response, third order two carrier intermodulation distortion and second harmonic distortion which were shown to be in reasonable agreement with experimental results, especially when the modulating signals are small. Nevertheless, when modulating signals are large, small signal analysis may lose its accuracy and validity. In this paper, we use numerical methods to study the distortion produced by a directly modulated laser diode with weak coherent optical feedback.
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弱光反馈下直接调制半导体激光器畸变的数值分析
副载波复用(SCM)光通信系统因其提供简单、低成本和宽带的光纤通信而受到许多研究者的研究。在实际的单片机系统中,一些光通过各种不连续性(如拼接)无意地反馈到激光二极管中,对直接调制半导体激光器的性能产生不利影响。在理论上和实验上都进行了许多研究[1-4]。Helms[2]利用小信号摄动法给出了调制响应、三阶双载波互调失真和二次谐波失真的表达式,特别是在调制信号很小的情况下,与实验结果基本吻合。然而,当调制信号较大时,小信号分析可能会失去其准确性和有效性。本文用数值方法研究了具有弱相干光反馈的直调制激光二极管产生的畸变。
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