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Higher-order effects on self-similar parabolic pulse in the microstructured fibre amplifier 被引量:1

Higher-order effects on self-similar parabolic pulse in the microstructured fibre amplifier
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摘要 By considering higher-order effects, the properties of self-similar parabolic pulses propagating in the microstructured fibre amplifier with a normal group-velocity dispersion have been investigated. The numerical results indicate that the higher-order effects can badly distort self-similar parabolic pulse shape and optical spectrum, and at the same time the peak shift and oscillation appear, while the pulse still reveals highly linear chirp but grows into asymmetry. The influence of different higher-order effects on self-similar parabolic pulse propagation has been analysed. It shows that the self-steepening plays a more important role. We can manipulate the geometrical parameters of the microstructured fibre amplifier to gain a suitable dispersion and nonlinearity coefficient which will keep high-quality self-similar parabolic pulse propagation. These results are significant for the further study of self-similar parabolic pulse propagation. By considering higher-order effects, the properties of self-similar parabolic pulses propagating in the microstructured fibre amplifier with a normal group-velocity dispersion have been investigated. The numerical results indicate that the higher-order effects can badly distort self-similar parabolic pulse shape and optical spectrum, and at the same time the peak shift and oscillation appear, while the pulse still reveals highly linear chirp but grows into asymmetry. The influence of different higher-order effects on self-similar parabolic pulse propagation has been analysed. It shows that the self-steepening plays a more important role. We can manipulate the geometrical parameters of the microstructured fibre amplifier to gain a suitable dispersion and nonlinearity coefficient which will keep high-quality self-similar parabolic pulse propagation. These results are significant for the further study of self-similar parabolic pulse propagation.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第3期1025-1028,共4页 中国物理B(英文版)
基金 Project supported by the National Science Foundation of Guangdong Province,China(Grant No04010397)
关键词 self-similar parabolic pulse microstructured fibre amplifier higher-order dispersion nonlinear effect self-similar parabolic pulse, microstructured fibre amplifier, higher-order dispersion nonlinear effect
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