Literature DB >> 19498473

Compensation of nonlinear phase shifts with third-order dispersion in short-pulse fiber amplifiers.

Shian Zhou, Lyuba Kuznetsova, Andy Chong, Frank Wise.   

Abstract

We show that nonlinear phase shifts and third-order dispersion can compensate each other in short-pulse fiber amplifiers. This compen-sation can be exploited in any implementation of chirped-pulse amplification, with stretching and compression accomplished with diffraction gratings, single-mode fiber, microstructure fiber, fiber Bragg gratings, etc. In particular, we consider chirped-pulse fiber amplifiers at wavelengths for which the fiber dispersion is normal. The nonlinear phase shift accumulated in the amplifier can be compensated by the third-order dispersion of the combination of a fiber stretcher and grating compressor. A numerical model is used to predict the compensation, and experimental results that exhibit the main features of the calculations are presented. In the presence of third-order dispersion, an optimal nonlinear phase shift reduces the pulse duration, and enhances the peak power and pulse contrast compared to the pulse produced in linear propagation. Contrary to common belief, fiber stretchers can perform as well or better than grating stretchers in fiber amplifiers, while offering the major practical advantages of a waveguide medium.

Year:  2005        PMID: 19498473     DOI: 10.1364/opex.13.004869

Source DB:  PubMed          Journal:  Opt Express        ISSN: 1094-4087            Impact factor:   3.894


  3 in total

1.  Nonlinear ultrafast fiber amplifiers beyond the gain-narrowing limit.

Authors:  Pavel Sidorenko; Walter Fu; Frank Wise
Journal:  Optica       Date:  2019-10-20       Impact factor: 11.104

2.  Exploitation of stimulated Raman scattering in short-pulse fiber amplifiers.

Authors:  Shian Zhou; Tetsuji Takamido; Shinji Imai; Frank Wise
Journal:  Opt Lett       Date:  2010-07-15       Impact factor: 3.776

Review 3.  Ultrafast Fiber Lasers: An Expanding Versatile Toolbox.

Authors:  Guoqing Chang; Zhiyi Wei
Journal:  iScience       Date:  2020-04-25
  3 in total

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