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Volume 29 Issue 6
Sep.  2013
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Study on the fiber-optic periodic pulse replication techniques

  • Received Date: 2004-09-07
    Accepted Date: 2004-10-12
  • Current fiber-optic pulse replication techniques for generating high-speed optical pulse patterns are studied.The characteristics of different implementation of the fiber-optic pulse replicators based on different techniques are compared according to the different performance requirements of insertion loss,periodicity and power stability of the output pulses in various applications.Through the theoretical analyses of the key parameters of the replicated pulse output from these devices and their limiting factors,the feasibility and methods for further optimization of the output are presented.The optical pulse activecirculating replicator using optical amplifier is suitable for generating a sequence of pulse trains with precise periodicity and high output power.
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通讯作者: 陈斌, bchen63@163.com
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    沈阳化工大学材料科学与工程学院 沈阳 110142

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Study on the fiber-optic periodic pulse replication techniques

  • 1. Institute of Electronic Engineering, CAEP, Mianyang 621900, China;
  • 2. School of Electrical and Information Engineering, Beijing University of Aeronautics and Astronautics, Beijing 100083;
  • 3. College of Micro-Electronics and Solid-Electon isc UESTC Chengdu 610054, China

Abstract: Current fiber-optic pulse replication techniques for generating high-speed optical pulse patterns are studied.The characteristics of different implementation of the fiber-optic pulse replicators based on different techniques are compared according to the different performance requirements of insertion loss,periodicity and power stability of the output pulses in various applications.Through the theoretical analyses of the key parameters of the replicated pulse output from these devices and their limiting factors,the feasibility and methods for further optimization of the output are presented.The optical pulse activecirculating replicator using optical amplifier is suitable for generating a sequence of pulse trains with precise periodicity and high output power.

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