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Enhanceed Transmission Stability of Polarization Solitons in Birefringent Fibres with an Optical Phase Conjugator

机译:借助光学相位共轭器提高了偏振孤子在双折射光纤中的传输稳定性

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摘要

An optical phase conjugator is used to enhance transmission stability of polarization solitons in highly birefringent fibres. Two polarization solitons form a breather in fibres with low birefringence firstly and the optical phase conjugator is used to make the spectra of polarization solitons converse, which results in the fact that the polarization soliton along the fast axis is compressed due to the strengthened self-phase modulation effect. Two polarization solitons are compressed further due to the cross-phase modulation effect. The enhanced nonlinear effects make the central peak frequencies of two polarization solitons shift to the larger range in opposite directions so that they trap each other fully to suppress the effect of birefringence.
机译:光学相位共轭器用于增强高双折射光纤中偏振孤子的传输稳定性。两个偏振孤子首先在低双折射的光纤中形成通气,并且使用光学相位共轭器使偏振孤子的光谱反转,从而导致由于增强的自相而使沿快轴的偏振孤子被压缩的事实。调制效果。由于交叉相位调制效应,两个极化孤子被进一步压缩。增强的非线性效应使两个偏振孤子的中心峰值频率在相反方向上移至更大的范围,从而使它们彼此完全俘获,从而抑制了双折射效应。

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