首页> 外文期刊>Lightwave Technology, Journal of >Distributed Aggregation of Spectrally Efficient Single- and Dual-Polarization Super-Channels by Optical Frequency Conversion in Fiber
【24h】

Distributed Aggregation of Spectrally Efficient Single- and Dual-Polarization Super-Channels by Optical Frequency Conversion in Fiber

机译:光纤中通过光频率转换实现频谱有效的单极化和双极化超级通道的分布式聚集

获取原文
获取原文并翻译 | 示例
       

摘要

Recently developed upgrade options for distributed ultra-dense frequency-division multiplexing toward large aggregation capacity are discussed. The concept, originally demonstrated for distributed coherent optical orthogonal frequency-division multiplexing, is based on optical frequency conversion in fiber. It enables precise frequency allocation of the successively multiplexed subcarriers within the super-channel without the need of absolute optical frequency control, i.e., allowing for use of free-running lasers at the individual multiplexing nodes. Follow-up experiments proved the applicability of this concept also to Nyquist wavelength-division multiplexing (WDM) with extremely small guard bands by successfully demonstrating the distributed aggregation of a spectrally efficient 400-Gb/s single-polarization zero-guard-band Nyquist-WDM super-channel using 4× 28-GBd 16-ary quadrature-amplitude modulation (16QAM) subcarriers. Recently, we further extended the concept to distributed generation of dual-polarization super-channels. This extension allowed for the distributed aggregation of a 400-Gb/s Nyquist-WDM super-channel using 4× 28-GBd polarization-division multiplexed quaternary phase-shift keying (PDM-QPSK) subcarriers. In this invited contribution, we review and compare in detail both experiments enabling 400-Gb/s aggregation capacity. Additionally, we discuss a viable option for operation under random fiber birefringence regardless of the polarization-dependent nature of the underlying optical frequency conversion process.
机译:讨论了最近开发的针对超大聚合容量的分布式超密集频分复用升级选项。该概念最初是为分布式相干光正交频分复用而演示的,它基于光纤中的光频率转换。它使得能够在超信道内精确地分配连续多路复用的子载波的频率,而无需绝对的光频率控制,即,允许在各个多路复用节点处使用自由运行的激光器。后续实验通过成功演示了频谱有效的400 Gb / s单极化零保护频带Nyquist-的分布式聚集,证明了该概念也适用于具有极小保护频带的奈奎斯特波分复用(WDM)。使用4个28 GBd 16进制正交幅度调制(16QAM)子载波的WDM超信道。最近,我们将概念进一步扩展到了双极化超级通道的分布式生成。此扩展允许使用4 x 28 GBd极化分区复用四元相移键控(PDM-QPSK)子载波来分布式聚合400 Gb / s Nyquist-WDM超信道。在此邀请的贡献中,我们将详细审查和比较两个实验,这些实验可实现400 Gb / s的聚合容量。此外,我们讨论了在随机光纤双折射下进行操作的可行选择,而与基础光学频率转换过程的偏振相关性质无关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号