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Improvement of input power dynamic range for 20 Gbit/s optical WDM switch nodes using an integrated Michelson wavelength converter

机译:使用集成的迈克尔逊波长转换器改善20 Gbit / s光学WDm交换节点的输入功率动态范围

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摘要

The implementation of photonic wavelength-division multiplexing (WDM) switch nodes with wavelength converters allows for higher throughput and easier management, as well as wavelength reuse. Furthermore, semiconductor optical amplifiers (SOAs) are attractive for space switching in the nodes because they offer short switching times, compensate for loss and, very importantly, have the high on-off ratios of 40-50 dB that are required to overcome crosstalk induced penalty. One disadvantage of the SOA gates is their limited input power dynamic range and, thus, limited cascadability caused by noise and gain saturation. We show that even at a high bit-rate of 20 Gbit/s the latter imperfection can be compensated by the extinction ratio enhancing capability of interferometric wavelength converters (IWCs). Consequently, the input power dynamic range for switch blocks using IWCs together with SOA gates can be improved compared to switch blocks without IWCs. This is especially important at high bit rates where the cascadability of the SOA gates decreases. Here, more than 15 dB improvement of the input power dynamic range is achieved at 20 Gbit/s using a high-speed Michelson interferometer wavelength converter after the SOA gate compared to the SOA gate alone
机译:具有波长转换器的光子波分复用(WDM)交换节点的实现可实现更高的吞吐量和更轻松的管理,以及波长复用。此外,半导体光放大器(SOA)对于节点中的空间切换很有吸引力,因为它们提供了短的切换时间,补偿了损耗,并且非常重要的是,它具有40-50 dB的高通断比,这是克服引起的串扰的必要条件罚款。 SOA门的一个缺点是其有限的输入功率动态范围,因此由噪声和增益饱和引起的级联性有限。我们表明,即使在20 Gbit / s的高比特率下,后者的缺陷也可以通过干涉式波长转换器(IWCs)的消光比增强功能来补偿。因此,与不带IWC的开关模块相比,使用IWC和SOA门的开关模块的输入功率动态范围可以得到改善。这在SOA门级联性降低的高比特率下尤其重要。在这里,与仅使用SOA门相比,使用SOA门之后的高速迈克尔逊干涉仪波长转换器,在20 Gbit / s的速度下,输入功率动态范围提高了15 dB以上

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