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Numerical study on pulse trapping in birefringent photonic crystal fibers

Numerical study on pulse trapping in birefringent photonic crystal fibers
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摘要 Using an adaptive split-step Fourier method,the coupled nonlinear Schrdinger equations have been numerically solved in this paper.The nonlinear propagation of an ultrashort optical pulse in the birefringent photonic crystal fibers is investigated numerically.It is found that the phenomenon of pulse trapping occurs when the incident pulse is deviating from the principal axis of the fiber with some angle.Owing to the birefringence effect,the incident pulse can be regarded as two orthogonal polarized pulses.The phenomenon of pulse trapping occurs because of the cross phase modulation(XPM) between the two components.As a result,the bandwidth of the supercontinuum(SC) decreases compared with the case that the incident pulse is input along the principal axis.When the polarization direction of the incident pulse is parallel to the fast axis,the bandwidth of the supercontinuum is maximal.
出处 《Optoelectronics Letters》 EI 2011年第3期205-208,共4页 光电子快报(英文版)
基金 supported by the National Natural Science Foundation of China (No.10874145) the Natural Science Foundation of Hebei Province of China (No.F2009000481) the China Postdoctoral Science Foundation (No.20080440014)
关键词 BANDWIDTH BIREFRINGENCE Crystal whiskers Numerical methods Phase modulation Photonic crystals 光子晶体光纤 双折射效应 数值研究 光脉冲 非线性传播 交叉相位调制 薛定谔方程 正交极化
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