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Evolution of the degree of co-polarization in high-birefringence fibers

机译:高双折射光纤中共偏振度的演变

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摘要

An analytical model accurately describing the evolution of the relative state of polarization between two signals in high-birefringence fibers is presented. The degree of co-polarization is calculated as a function of the angle between the principal axes of the fiber and the state of polarization of the two input signals, for two different input polarization schemes. It is shown that for small fiber lengths or narrow wavelength separation, launching the two signals with orthogonal polarizations can present a higher degree of co-polarization along the propagation; for large wavelength separation or long distances, the degree of co-polarization for the parallel scheme is always equal or higher than for the orthogonal case. The model for the degree of co-polarization is compared with theoretical and experimental four-wave mixing results in a dispersion shifted high-birefringence fiber.
机译:提出了一种精确描述高双折射光纤中两个信号之间的相对偏振态演变的分析模型。对于两种不同的输入偏振方案,共偏振度是根据光纤主轴之间的角度和两个输入信号的偏振态的函数来计算的。结果表明,对于较小的光纤长度或较窄的波长间隔,以正交偏振方式发射两个信号会沿传播方向呈现更高的共偏振度;因此,在传输过程中会出现较高的共偏振度。对于大的波长间隔或长距离,并行方案的同极化度始终等于或高于正交情况。将同极化度的模型与理论和实验的四波混频结果进行了比较,得出了色散位移高双折射光纤。

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