Nonlinear effects associated with the large-signal direct modulation of semiconductor laser diodes

M. Majewski
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引用次数: 1

Abstract

The relationship between the optical signal response at the fundamental modulation frequency and the magnitude of the driving current is of particular importance to analog communication applications of semiconductor laser diodes. A closed-form analytical expression for the optical response of a laser diode under large-signal direct modulation conditions is presented. It was derived on the basis of the single-mode rate equations. The rate equations used in the analysis presented include the optical gain compression term. It was found that the magnitude of the gain compression ( in ) strongly affects the linearity of the large-signal modulation characteristic, particularly at higher modulation frequencies close to the frequency of the relaxation oscillation peak. The relaxation oscillation peak whose magnitude depends on the value of in exhibits a shift towards lower frequencies with the increase of electrical modulation depth.<>
半导体激光二极管大信号直接调制的非线性效应
基频调制下的光信号响应与驱动电流的大小之间的关系对于半导体激光二极管的模拟通信应用具有特别重要的意义。给出了大信号直接调制条件下激光二极管光响应的封闭解析表达式。它是在单模速率方程的基础上推导出来的。在分析中使用的速率方程包括光增益压缩项。结果发现,增益压缩的幅度(in)强烈影响大信号调制特性的线性度,特别是在接近松弛振荡峰值频率的较高调制频率处。随着电调制深度的增加,其振幅取决于in的值的弛豫振荡峰向低频偏移。
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