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首页> 外文期刊>Journal of Modern Optics >Optical solitons in gas-filled, hollow-core photonic crystal fibers with inter-modal dispersion and self-steepening
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Optical solitons in gas-filled, hollow-core photonic crystal fibers with inter-modal dispersion and self-steepening

机译:气态中空光子晶体光纤中的孤子,具有模态间色散和自增强作用

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摘要

The optical solitons in a gas-filled, hollow-core photonic crystal fiber with higher-order dispersion, inter-modal dispersion, Raman effect, self-steepening, detuning, external potential, and dissipation have been studied theoretically by employing the B?cklund transformation and Hirota's direct method. The bilinear forms and exact optical one-soliton solutions to the nonlinear optical transmission equation are obtained under the constraint conditions. The influence of correlation coefficients on the width, amplitude, and phase of optical solitons are analyzed. These results have important application features in optical soliton control in gas-filled, hollow-core photonic crystal fibers.
机译:通过使用B?cklund理论上研究了具有高阶色散,模态色散,拉曼效应,自陡峭,失谐,外部电势和耗散的充气中空光子晶体光纤中的光学孤子。转换和Hirota的直接方法。在约束条件下,获得了非线性光学传输方程的双线性形式和精确的光学单孤子解。分析了相关系数对光孤子的宽度,幅度和相位的影响。这些结果在气体中空空心光子晶体光纤中的孤子控制中具有重要的应用特征。

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