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Study of all-optical clock recovery performance by the primary and the secondary temporal Talbot effects in a second-order dispersive medium

机译:通过二阶色散介质中的主要和次要时间Talbot效应研究全光时钟恢复性能

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摘要

We theoretically and experimentally study the all-optical clock recovery performance using the primary or the secondary temporal Talbot effects (PTTE or STTE, respectively) in a dispersive medium having the first-order dispersion together with the second-order dispersion (e.g., conventional single-mode fibers: SMFs). Our preliminary numerical simulations have indicated that the STTE-based all-optical clock recovery technique can improve double its performance as compared with the conventional PTTE-based technique when the second-order dispersion (dispersion slope) can be neglected. The following simulation results have revealed that the second-order dispersion, that the normal SMFs possess, limits the performance improvements in the STTE-based clock recovery, whereas the limited performance can be improved by appropriately compensating for the second-order dispersion. On the basis of our simulation results, experiments of the STTE-based clock recovery were conducted by compensating for the second-order dispersion of SMFs used as dispersive media. To be specific, SMFs' second-order dispersion has been reduced to the one-sixteenth of its original value by combining with the reverse-dispersion fibers (RDFs) which can provide the second-order dispersion of the opposite sign to the SMFs. As a result, the performance improvements in the STTE-based clock recovery was demonstrated so that the 10-GHz clear optical clock pulses were successfully recovered from 10-Gbit/s return-to-zero (RZ) pseudo-random bit sequence (PRBS) optical signals.
机译:我们在理论上和实验上研究了在具有一阶色散和二阶色散(例如常规单色散)的色散介质中使用主或次要时间Talbot效应(分别为PTTE或STTE)的全光时钟恢复性能模光纤:SMF)。我们的初步数值模拟表明,当可以忽略二阶色散(色散斜率)时,与常规的PTTE技术相比,基于STTE的全光时钟恢复技术可以将其性能提高两倍。下面的仿真结果表明,普通SMF拥有的二阶色散限制了基于STTE的时钟恢复的性能改进,而有限的性能可以通过适当地补偿二阶色散来改善。根据我们的仿真结果,通过补偿用作色散介质的SMF的二阶色散来进行基于STTE的时钟恢复实验。具体而言,通过与反向色散光纤(RDF)结合使用,SMF的二阶色散已降至其原始值的十六分之一,而反向色散光纤可以为SMF提供相反符号的二阶色散。结果,证明了基于STTE的时钟恢复的性能提高,从而成功地从10-Gbit / s归零(RZ)伪随机比特序列(PRBS)中恢复了10 GHz清晰光时钟脉冲。 )光信号。

著录项

  • 来源
    《Optical fiber technology》 |2010年第4期|P.192-204|共13页
  • 作者单位

    Department of Communications Engineering, National Defense Academy, 1 -10-20 Hashirimizu, Yokosuka, Kanagawa 239-8686, Japan;

    rnDepartment of Communications Engineering, National Defense Academy, 1 -10-20 Hashirimizu, Yokosuka, Kanagawa 239-8686, Japan;

    rnDepartment of Communications Engineering, National Defense Academy, 1 -10-20 Hashirimizu, Yokosuka, Kanagawa 239-8686, Japan;

    rnDepartment of Communications Engineering, National Defense Academy, 1 -10-20 Hashirimizu, Yokosuka, Kanagawa 239-8686, Japan;

    rnDepartment of Communications Engineering, National Defense Academy, 1 -10-20 Hashirimizu, Yokosuka, Kanagawa 239-8686, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    temporal talbot effect; dispersion slope; all-optical clock recovery;

    机译:短暂的塔博特效应色散斜率全光时钟恢复;
  • 入库时间 2022-08-18 02:50:25

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