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Volume 34 Issue 6
Mar.  2011
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Theory and simulation of chirped pulse amplification

  • Received Date: 2009-12-09
    Accepted Date: 2010-01-08
  • In order to compare the propagation characteristics of chirped-pulse propagating in homogeneously and inhomogeneously broadening mediums,they were analyzed and simulated by means of split-step Fourier method.Then they were proved in experiments.The effect of gain narrowing,gain saturation and self phase modulation on temporal shape and power spectra in both mediums were obtained.It is found that the effect of gain narrowing is more obvious and the effect of gain saturation is inhibited well in inhomogeneously broadening medium,and power spectra in both mediums are broadened,which is more symmetry in inhomogeneously broadening medium and distortive in homogeneously broadening medium.These results are useful to study the propagation features of chirped-pulse in comprehensive broadening mediums.
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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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Theory and simulation of chirped pulse amplification

  • 1. Department of Communication Engineering, Chongqing College of Electronic Engineering, Chongqing 401331;
  • 2. Institute of Optical Communication and Optoelectronics, Beijing University of Posts and Telecommunications, Beijing 100876, China

Abstract: In order to compare the propagation characteristics of chirped-pulse propagating in homogeneously and inhomogeneously broadening mediums,they were analyzed and simulated by means of split-step Fourier method.Then they were proved in experiments.The effect of gain narrowing,gain saturation and self phase modulation on temporal shape and power spectra in both mediums were obtained.It is found that the effect of gain narrowing is more obvious and the effect of gain saturation is inhibited well in inhomogeneously broadening medium,and power spectra in both mediums are broadened,which is more symmetry in inhomogeneously broadening medium and distortive in homogeneously broadening medium.These results are useful to study the propagation features of chirped-pulse in comprehensive broadening mediums.

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