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Volume 34 Issue 2
May  2010
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Study of the self-similar evolution for optical pulse in nonlinearity-increasing fibers

  • Received Date: 2009-01-12
    Accepted Date: 2009-02-16
  • The propagation and evolution characteristics of ultra-short pulses in a nonlinearity-increasing fiber were studied based on theoretical analysis and numerical calculation. Numerical simulation shows that the propagation in a nonlinearity-increasing fiber is similar with that in a gain-amplification fiber or dispersion fiber, i.e., the propagation and evolution accords with the self-similar evolution. Finally the parabolic pulse with linear chirp can be achieved. The result is useful for pulse compression because the parabolic pulse has linear chirp.
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    CHEN H T,WU Zh M,FAN Y X,et al.Numerical studies on the compression and amplification of the fundamental soliton pulse using erbium-doped fiber amplifier[J].Laser Technology,2006,30(2):202-205 (in Chinese).
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    CHEN H T,WU Zh M,WU J W,et al.A designed model for pedestal-free ultra-short pulse generation using DCF,DSF and ED-NALM[J].Laser Technology,2005,29(3):275-277(in Chinese).
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    FERMANN M E,KRUGLOVK V I,THOMSEN B C,et al.Self-similar propagation and amplification of parbolic pulses in optical fibers[J].Phy Rev Lett,2000,84(26):6010-6013.
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    KRUGLOV V I,PEACOCK A C,HARVEY J D.Self-similar propagation of parabolic pulses in normal-dispersion fiber amplifiers[J].J O S A,2002,B19(3):461-469.
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    HIROOKA T,NAKAZAWA M.Parabolic pulse generation by use of a dispersion-decreasing fiber with normal group-velocity dispersion[J].Opt Lett,2004,29(5):498-50.
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    FENG J,XU W Ch,LI Sh X,et al.Analytical self-similar solution of Ginzburg-Landau equation for the dispersion decreasing fiber[J].Acta Physica Sinica,2007,56(11):5835-5842(in Chinese).
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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 of the self-similar evolution for optical pulse in nonlinearity-increasing fibers

  • 1. Fundament Department, Armed Police Academy, Langfang 065000, China;
  • 2. College of Optoelectronic Science and Engineering, Huazhong University of Science and Technology, Wuhan 430074, China;
  • 3. School of Physical Science and Technology, South-West University, Chongqing 400715, China

Abstract: The propagation and evolution characteristics of ultra-short pulses in a nonlinearity-increasing fiber were studied based on theoretical analysis and numerical calculation. Numerical simulation shows that the propagation in a nonlinearity-increasing fiber is similar with that in a gain-amplification fiber or dispersion fiber, i.e., the propagation and evolution accords with the self-similar evolution. Finally the parabolic pulse with linear chirp can be achieved. The result is useful for pulse compression because the parabolic pulse has linear chirp.

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