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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Techniques for Polarization-Independent Cross-Phase Modulation in Nonlinear Birefringent Fibers
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Techniques for Polarization-Independent Cross-Phase Modulation in Nonlinear Birefringent Fibers

机译:非线性双折射光纤中与偏振无关的相位调制技术

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We present a theoretical, numerical, and experimental investigation of the polarization dependence of cross-phase modulation in nonlinear birefringent fibers. Two new methods are described for producing a polarization-independent spectral shift through cross-phase modulation of a weak probe signal by a copropagating strong optical pulse. The birefringence of the fiber and spectral separation between the pump and probe signals are shown to play a critical role in determining the polarization dependence of the cross-phase modulation process. The methods are experimentally verified in two different highly nonlinear fibers, and are used to achieve polarization-independent optical switching at speeds of up to 160 Gb/s.
机译:我们提出了非线性双折射光纤中交叉相位调制的偏振相关性的理论,数值和实验研究。描述了两种新方法,用于通过共传播强光脉冲通过对弱探针信号进行交叉相位调制来产生与偏振无关的光谱偏移。光纤的双折射和泵浦信号与探头信号之间的光谱分离显示出在确定交叉相位调制过程的偏振相关性中起关键作用。该方法在两条不同的高度非线性光纤中进行了实验验证,并用于以高达160 Gb / s的速度实现与偏振无关的光切换。

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