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Understanding the formation of the SRS Stokes spectrum in fused silica fibers

机译:了解熔融石英纤维中SRS斯托克斯光谱的形成

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Spectral characteristics of stimulated Raman scattering (SRS) in optical fibers are examined in a regime (nanosecond pulses or longer) for which effects such a self-phase modulation, cross-phase modulation, and group velocity dispersion are negligible. An XeF excimer laser was used to pump a multimode fused silica UV optical fiber to observe SRS multiple-order Stokes generation. A theoretical model in which SRS is the only nonlinear effect induced was developed to simulate the SRS spectra of excimer laser pumped silica fibers. Good agreement has been achieved on spectral characteristics of SRS between the computer simulation and experimental results, which clarifies several puzzling features observed in experiment. The most important parameters to the evolution of SRS spectra in fibers were found to be the Raman gain curve, and the linewidth and temporal profile of the input pump.
机译:光纤中的受激拉曼散射(SRS)的光谱特性在纳秒脉冲或更长时间的范围内进行了检查,对于该范围,自相位调制,交叉相位调制和群速度色散的影响可忽略不计。使用XeF准分子激光器泵浦多模熔融石英UV光纤,以观察SRS多阶斯托克斯波的产生。建立了一个理论模型,其中SRS是唯一引起的非线性效应,以模拟受激准分子激光泵浦石英纤维的SRS光谱。在计算机仿真和实验结果之间,SRS的光谱特性已经达成了很好的协议,这澄清了在实验中观察到的一些令人困惑的特征。发现光纤中SRS光谱演化的最重要参数是拉曼增益曲线,输入泵的线宽和时间分布。

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