用于柔性光梳源的注入锁定激光器

P. Anandarajah, R. Zhou, R. Maher, M. Deseada Gutierrez Pascual, F. Smyth, V. Vujicic, L. Barry
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引用次数: 2

摘要

为了继续满足带宽需求,光传输网络将很快要求信道数据速率超过100gb /s。文献中提出了基于柔性网格roadm的带宽柔性光网络,支持400gb /s和1tb /s超级信道。在这样的系统中,包括相干光OFDM和奈奎斯特WDM传输在内的技术可用于达到或接近符号速率的信道间隔。由于这些技术所提供的通道间保护带的减少(或消除),它们最好由光学梳状源提供恒定的载波间隔,而不是独立的激光器。此外,提供自由频谱范围(FSR)可调性的梳状源允许单个源轻松适应所选的符号速率。为了在此类系统中成功应用,光频率梳源应具有良好的频谱平坦度、高频率稳定性、低线宽和可调谐的自由频谱范围(FSR)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Injection locked lasers for flexible optical comb sources
Optical transport networks will soon require channel data rates in excess of 100 Gb/s in order to continue to meet the demand for bandwidth. Bandwidth flexible optical networks, based on flex-grid ROADMs, have been proposed in the literature to support 400 Gb/s and 1 Tb/s super channels. In such systems, techniques including coherent optical OFDM and Nyquist WDM transmission may be employed to achieve channel spacing at or close to the symbol rate. Due to the reduction (or elimination) of inter-channel guard bands afforded by these techniques they are best served by optical comb sources which offer constant frequency spacing between the carriers, as opposed to independent lasers that do not. Moreover, a comb source that offers free spectral range (FSR) tunability allows a single source to be easily adapted to suit the chosen symbol rate. In order to be successfully employed in such systems, optical frequency comb sources should exhibit good spectral flatness, high frequency stability, low linewidth, and a tunable free spectral range (FSR).
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