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Optical Waveform Monitoring Based on a Free-Running Mode-Locked Femtosecond Fibre Laser and Four-Wave Mixing in a Highly Nonlinear Fibre

机译:基于自由运行模式锁定飞秒光纤激光器和高非线性光纤中四波混频的光波形监测

摘要

Optical sampling based on ultrafast optical nonlinearities is a useful technique to monitor the waveforms of ultrashort optical pulses. In this paper, we present a new implementation of optical waveform sampling systems by employing our newly constructed free-running mode-locked fibre laser with a tunable repetition rate and a low timing jitter, an all-optical waveform sampler with a highly nonlinear fibre (HNLF), and our developed computer algorithm for optical waveform display and measurement, respectively. Using a femtosecond fibre laser to generate the highly stable optical sampling pulses and exploiting the four-wave mixing effect in a 100m-long HNLF, we successfully demonstrate the all-optical waveform sampling of a 10GHz optical clock pulse sequence with a pulse width of 1.8 ps and a 80Gbit/s optical data signal, respectively. The experimental results show that waveforms of the tested optical pulse signals are accurately reproduced with a pulse width of 2.0 ps. This corresponds to a temporal resolution of 0.87 ps for optical waveform measurement. Moreover, the optical eye diagram of a 10Gbit/s optical data signal with a 1.8 ps pulse width is also accurately measured by employing our developed optical sampling system.
机译:基于超快光学非线性的光学采样是监视超短光脉冲波形的有用技术。在本文中,我们通过使用我们新构建的具有可调重复率和低定时抖动的自由运行锁模光纤激光器,具有高度非线性光纤的全光波形采样器,提出了一种光波形采样系统的新实现方式。 HNLF)和我们开发的分别用于光波形显示和测量的计算机算法。使用飞秒光纤激光器生成高度稳定的光学采样脉冲并利用100m长HNLF中的四波混频效果,我们成功演示了脉冲宽度为1.8的10GHz光学时钟脉冲序列的全光波形采样ps和80Gbit / s的光学数据信号。实验结果表明,以2.0 ps的脉冲宽度可以准确地再现被测光脉冲信号的波形。这对应于光波形测量的时间分辨率为0.87 ps。此外,通过使用我们开发的光学采样系统,还可以精确测量脉冲宽度为1.8 ps的10Gbit / s光学数据信号的光学眼图。

著录项

  • 作者

    Liu Y; Zhang J; Tang D;

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

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