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Polarization attributes of stimulated Brillouin scattering slow light in fiber

机译:受激布里渊散射光在光纤中的偏振特性

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The polarization-related properties of stimulated Brillouin scattering (SBS) processes in long, randomly birefringent, standard optical fibers are examined. Evolution equations for the pump and signal waves, in the presence of both birefringence and SBS, are provided in Jones and Stokes spaces. It is shown that in the undepleted pump regime, the amplification of the SBS signal wave is equivalent to that of a linear medium with polarization-dependent gain. The process is associated with a pair of orthogonal states of polarizations (SOPs) of the signal wave, which undergo maximum and minimum amplification. In long, standard fibers, the Jones vector of the probe SOP which corresponds to maximum amplification is aligned with the complex conjugate of the pump wave Jones vector. The maximum and minimum SBS gain coefficients in such fibers equal two-thirds and one-third of the gain coefficient that is predicted by scalar theory, respectively. The large differential gain of the SBS process gives rise to an effective pulling of the amplified Stokes probe wave SOP, towards that of maximum amplification. Lastly, Stokes wave pulses that are aligned for maximum and minimum amplification experience different group delays, which manifest as polarization-related distortions in SBS slow light setups.
机译:研究了长双随机双折射标准光纤中受激布里渊散射(SBS)过程的偏振相关特性。在琼斯和斯托克斯空间中,提供了在存在双折射和SBS的情况下泵浦波和信号波的演化方程。结果表明,在未耗尽的泵浦状态下,SBS信号波的放大相当于具有偏振相关增益的线性介质的放大。该过程与信号波的一对正交极化状态(SOP)相关,该状态经过最大和最小放大。在长的标准光纤中,对应于最大放大倍数的探针SOP的琼斯向量与泵浦波琼斯向量的复共轭对齐。这种光纤中的最大和最小SBS增益系数分别等于标量理论预测的增益系数的三分之二和三分之一。 SBS过程的大差分增益可将放大的斯托克斯探针波SOP有效拉向最大放大。最后,为最大和最小放大而排列的斯托克斯波脉冲会经历不同的群延迟,这表现为SBS慢光设置中与偏振有关的失真。

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