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Generation of broadband continuous-wave supercontinuum Raman lasing in a fiber ring cavity

机译:纤维环腔中宽带连续波超连续素拉曼的产生

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Build-up process of the broadband continuous-wave supercontinuum Raman lasing (CWSCRL) in a fiber ring cavity is reconstructed theoretically through simulation based on the generalized nonlinear Schrodinger equations in the spectral domain. The physical mechanism of the CWSCRL is revealed as a combined effect of light amplification by stimulated Raman scattering and spectral broadening by four wave mixing in the view of the spectral domain. Detailed analysis as well as experimental confirmation shows that broad and flat spectrum can be achieved mainly by assigning the pumping wavelengths so that the first Raman Stokes wavelengths occur at both sides of the zero dispersion wavelength of the highly nonlinear dispersion-shifted fiber in the ring cavity, while optimization in pump power also matters. Different time structures of the Raman lasing are determined by the dispersion at the first-order Raman Stokes light wavelengths.
机译:通过基于光谱域中的广义非线性Schrodinger方程,理论上通过模拟重建纤维环腔中的宽带连续波超连续拉曼拉曼(CWSCR1)的构建过程。 CWSCR1的物理机制被揭示为光放大的综合效应通过刺激的拉曼散射和光谱拓展在光谱域的视图中通过四波混合进行光谱扩展。具体的分析以及实验证据表明,可以主要通过分配泵浦波长来实现宽和平坦的光谱,使得第一拉曼斯托克斯波长在环腔中的高度非线性分散偏移光纤的零色散波长的两侧发生,泵功率优化也很重要。拉曼激光的不同时间结构由一阶拉曼斯托克斯光波长的分散来确定。

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