Dynamics of electro-optical synchronization of self-pulsating laser diodes

A. Egan, P. Rees, J. O'Gorman, J. Hegarty, G. Farrell, P. Phelan
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Abstract

Higher speed requirements in communication systems have led to demands for fast optical sub-systems. Important aspects of such sub-systems will be the synchronization of self-pulsating laser diode (SP LD) emission to electrical or optical signals and timing extraction, aspects which have already been demonstrated experimentally. Consequently, these devices may play important roles as functional elements in transparent transmission systems. Effective implementation of these functions in communications systems using these devices depends on a more complete understanding of synchronization of SP LDs than exists at present. In this paper we address a number of important timing issues relating to electro-optical synchronization. We have experimentally observed for the first time that a phase difference exists between the input electrical signal and the output optical signal of a synchronized SP LD and we have experimentally and theoretically investigated the nature and behaviour of this phase difference. We have also numerically investigated the impact of synchronization of SP LDs on timing jitter in the emitted optical pulses.
自脉动激光二极管的电光同步动力学
通信系统对速度的更高要求导致了对快速光学子系统的需求。这些子系统的重要方面将是自脉冲激光二极管(SP LD)发射到电信号或光信号的同步和定时提取,这些方面已经在实验中得到了证明。因此,这些器件可能在透明传输系统中作为功能元件发挥重要作用。在使用这些设备的通信系统中有效地实现这些功能取决于对SP ld同步的更全面的理解。在本文中,我们讨论了一些与光电同步有关的重要时序问题。我们首次通过实验观察到同步SP LD的输入电信号和输出光信号之间存在相位差,并从实验和理论上研究了这种相位差的性质和行为。我们还用数值方法研究了SP ld同步对发射光脉冲时序抖动的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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