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Cascaded Raman scattering based high power octave-spanning supercontinuum generation in graded-index multimode fibers

机译:级联多模光纤中基于级联拉曼散射的高功率倍频跨超连续谱生成

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摘要

A new method to generate multi-watt-level, octave-spanning, spectrally flat supercontinua stemmed from cascaded Raman scattering in graded-index multimode fibers is reported. Formation dynamics of supercontinua are investigated by studying the effect of fiber length and core size. High power handling capacity of the graded-index multimode fibers is demonstrated by power scaling experiments. Pump pulse repetition rate is scaled from kHz to MHz while pump pulse peak power remains same and ~4 W supercontinuum is achieved with 2 MHz pump repetition rate. To the best of our knowledge, this is the highest average power and repetition supercontinuum source ever reported based on a graded-index multimode silica fiber. Spatial properties of the generated supercontinua are measured and Gaussian-like beam profiles obtained for different wavelength ranges. Numerical simulations are performed to investigate underlying nonlinear dynamics in details and well-aligned with experimental observations.
机译:报道了一种由梯度折射率多模光纤中的级联拉曼散射产生的多瓦特级,倍频程,频谱平坦的超连续谱的新方法。通过研究纤维长度和纤芯尺寸的影响,研究了超连续体的形成动力学。功率缩放实验证明了渐变折射率多模光纤的高功率处理能力。泵浦脉冲重复频率的范围从kHz到MHz,而泵浦脉冲峰值功率保持不变,并且在2 MHz泵浦重复频率下达到〜4 W超连续谱。据我们所知,这是有史以来基于渐变折射率多模石英光纤报道的最高平均功率和重复超连续谱源。测量所产生的超连续谱的空间特性,并针对不同的波长范围获得类似高斯的光束轮廓。进行数值模拟以详细研究潜在的非线性动力学,并与实验观察很好地吻合。

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