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Effective Linewidth of Semiconductor Lasers for Coherent Optical Data Links

机译:用于相干光数据链路的半导体激光器的有效线宽

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摘要

We discuss the implications of using monolithically integrated semiconductor lasers in high capacity optical coherent links suitable for metro applications, where the integration capabilities of semiconductor lasers make them an attractive candidate to reduce transceiver cost. By investigating semiconductor laser frequency noise profiles we show that carrier induced frequency noise plays an important role in system performance. We point out that, when such lasers are employed, the commonly used laser linewidth fails to estimate system performance, and we propose an alternative figure of merit that we name “Effective Linewidth”. We derive this figure of merit analytically, explore it by numerical simulations and experimentally validate our results by transmitting a 28 Gbaud DP-16QAM over an optical link. Our investigations cover the use of semiconductor lasers both in the transmitter side and as a local oscillator at the receiver. The obtained results show that our proposed “effective linewidth” is easy to measure and accounts for frequency noise more accurately, and hence the penalties associated to phase noise in the received signal.
机译:我们讨论了在适合地铁应用的高容量光学相干链路中使用单片集成半导体激光器的含义,其中半导体激光器的集成能力使其成为降低收发器成本的有吸引力的候选者。通过研究半导体激光器的频率噪声分布,我们表明载波感应频率噪声在系统性能中起着重要作用。我们指出,当使用此类激光器时,常用的激光线宽无法估计系统性能,因此我们提出了一种替代的品质因数,我们将其命名为“有效线宽”。我们通过分析得出该品质因数,通过数值模拟对其进行探索,并通过在光链路上传输28 Gbaud DP-16QAM来实验验证我们的结果。我们的研究涵盖了在发射器侧以及在接收器作为本地振荡器的半导体激光器的使用。获得的结果表明,我们提出的“有效线宽”易于测量,并且可以更准确地说明频率噪声,因此,与接收信号中的相位噪声相关联的惩罚。

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