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Higher-order effects on self-similar parabolic pulse in the microstructured fibre amplifier 被引量:1
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作者 刘伟慈 徐文成 +3 位作者 冯杰 陈伟成 李书贤 刘颂豪 《Chinese Physics B》 SCIE EI CAS CSCD 2008年第3期1025-1028,共4页
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 res... 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. 展开更多
关键词 self-similar parabolic pulse microstructured fibre amplifier higher-order dispersion nonlinear effect
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Effective regulation of the interaction process among three optical solitons
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作者 Houhui Yi Xiaofeng Li +2 位作者 Junling Zhang Xin Zhang Guoli Ma 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第10期190-197,共8页
The interaction between three optical solitons is a complex and valuable research direction,which is of practical application for promoting the development of optical communication and all-optical information processi... The interaction between three optical solitons is a complex and valuable research direction,which is of practical application for promoting the development of optical communication and all-optical information processing technology.In this paper,we start from the study of the variable-coefficient coupled higher-order nonlinear Schodinger equation(VCHNLSE),and obtain an analytical three-soliton solution of this equation.Based on the obtained solution,the interaction of the three optical solitons is explored when they are incident from different initial velocities and phases.When the higher-order dispersion and nonlinear functions are sinusoidal,hyperbolic secant,and hyperbolic tangent functions,the transmission properties of three optical solitons before and after interactions are discussed.Besides,this paper achieves effective regulation of amplitude and velocity of optical solitons as well as of the local state of interaction process,and interaction-free transmission of the three optical solitons is obtained with a small spacing.The relevant conclusions of the paper are of great significance in promoting the development of high-speed and large-capacity optical communication,optical signal processing,and optical computing. 展开更多
关键词 optical solitons solitons interactions nonlinear Schr¨odinger equation higher-order dispersion and nonlinear effects
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