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OCDMA, electronic bottleneck, and challenges for fiber-optic communications

机译:OCDMA,电子瓶颈和光纤通信的挑战

摘要

Optical fibre links have a great capacity potential for the point-to-point data transport. This aggregate data throughput has been further improved by implementation of data multiplexing techniques such as DWDM, OTDM, and OCDM. However fibre link capabilities becomes severely limited at the fiber links end points where the routing and switching takes place by the electronic serial data processing abilities of current CMOS electronics. Given a future where networks will need to perform ultra-high speed serial data processing all optically there will be basic requirements for all optical devices capable of performing at data rates well beyond is possible electronically today. To overcome this electronic bottleneck we have developed an ultrafast all optical photonic switch which does not suffer from the currier recovery time limitations affecting all optical switches based on Semiconductor Optical Amplifiers.
机译:光纤链路在点对点数据传输方面具有巨大的容量潜力。通过实施数据复用技术(例如DWDM,OTDM和OCDM),进一步提高了此聚合数据吞吐量。然而,由于当前CMOS电子设备的电子串行数据处理能力,在进行路由和交换的光纤链路端点处,光纤链路能力受到严重限制。在未来网络将需要全部光学执行超高速串行数据处理的情况下,对于所有能够以远远超过当今电子技术的数据速率执行性能的光学设备将提出基本要求。为了克服这个电子瓶颈,我们开发了一种超快全光子光子开关,该开关不受制于影响基于半导体光放大器的所有光子开关的电流恢复时间限制。

著录项

  • 作者

    Glesk Ivan;

  • 作者单位
  • 年度 2016
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
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