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Volume 27 Issue 4
Dec.  2013
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Transmission characteristics of super-Gaussian optical pulse in the single-mode optical fiber

  • Received Date: 2002-07-23
    Accepted Date: 2002-09-23
  • Based on the propagation equation used to describe the normalized amplitude evolution in the fiber,the evolution of super-Gaussian optical pulse propagating in the single-mode fiber has been investigated numerically.The results show that for an incident super-Gaussian pulse with steep edges,the evolution of its shape,frequency chirp,and peak intensity are different from those for an incident Gaussian pulse.Its shape undergoes a variation from near-rectangular,multi-peak,and finally to single-peak;its frequency chirp is not linear;and its peak intensity increases at first,then passing a maximum,and finally decreases monotonously.And these evolutions relate to the shape and frequency chirp of the incident super-Gaussian optical pulse.
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  • [1]

    Mrtensson J,Berntson A,Westland M W et al.Opt Lett,2001,26:55.
    [2]

    Malomed B A,Berntson A.J O S A,2001,B18:1243.
    [3]

    Linkt R A.IEEE J Q E,1985,21:593.
    [4]

    Agrawal G P.Nonlinear fiber optics.2nd,New York:Academic Press,1995:71.
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Transmission characteristics of super-Gaussian optical pulse in the single-mode optical fiber

  • 1. Department of Physics, Southwest Normal University, Chongqing, 400715

Abstract: Based on the propagation equation used to describe the normalized amplitude evolution in the fiber,the evolution of super-Gaussian optical pulse propagating in the single-mode fiber has been investigated numerically.The results show that for an incident super-Gaussian pulse with steep edges,the evolution of its shape,frequency chirp,and peak intensity are different from those for an incident Gaussian pulse.Its shape undergoes a variation from near-rectangular,multi-peak,and finally to single-peak;its frequency chirp is not linear;and its peak intensity increases at first,then passing a maximum,and finally decreases monotonously.And these evolutions relate to the shape and frequency chirp of the incident super-Gaussian optical pulse.

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