伪随机脉冲作用下半导体激光器随机频率波动对辐射线形的影响

Y. Morozov, I. Nefedov, V.N. Gusyatnikov
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引用次数: 0

摘要

众所周知,在创建动态单模分布反馈(DFB)异光激光器(HL)时,限制光纤链路传输长度的主要和物理上不可避免的因素是HL的有限频谱扩展。由于光纤的色散导致光谱信号分量的相对时移,导致发射线形扭曲,进而导致传输故障。本文首次给出了在当前伪随机脉冲调制下,频率波动对单模HL辐射谱成形影响的数值计算结果。我们将先前用于研究脉冲操作下HL强度波动的动力学和谱密度的新方法应用于分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Role of random frequency fluctuations in radiation line shaping for semiconductor laser under pseudorandom pulsed operation
It is well known that, on the creation of dynamically single-mode distributed feedback (DFB) heterolasers (HL), the principal and physically inevitable factor restricting the fiber-optics links transmission length is the finite spectrum spread of the HL. Due to the chromatic dispersion of fiber resulting in a relative temporal shift of spectral signal components, the emission lineshape is distorted which leads, in its turn, to the transmission malfunction. This paper presents for the first time the numerically calculated results for the estimation of frequency fluctuations role in shaping of a single-mode HL radiation spectrum under the current pseudorandom pulsed modulation. We apply to the analysis the novel approach that has been earlier used to study the dynamics and spectral density of the HL intensity fluctuations under pulsed operation.
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