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Numerical simulation of supercontinuum generation in GeO_2 doped fiber

机译:GEO_2掺杂光纤超连续生成的数值模拟

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Broadband coherent anti-Stokes Raman scattering (CARS) microscopy promises non-invasive, high information content microscopic imaging for live cells and tissues. Generation of a broadband continuum with appropriate characteristics to be used for Stokes light has been a roadblock for bringing this promise to fruition. Here we present numerical and experimental work towards generation of a suitable Stokes light continuum from a femtosecond pulse laser. In the simulations, the pulse propagation along the fiber is governed by the generalized nonlinear Schrodinger equation, including linear effects from the group velocity dispersion and the nonlinear effects from self phase modulation, delayed Raman scattering process and self-steepening. The equations are integrated using a symmetrized split-step Fourier method. Optimal fiber-related simulation parameters used in the model, such as the nonlinear coefficient, dispersion coefficients and the fraction of the stimulated Raman scattering contribution etc, are systematically investigated and determined for the GeO_2 doped fiber.
机译:宽带相干抗斯托克斯拉曼散射(汽车)显微镜应有非侵入性,高信息含量微观成像,用于活细胞和组织。使用适当的特征来用于斯托克斯灯的宽带连续体一直是一种障碍,使这一承诺能够实现这一承诺。在这里,我们向从飞秒脉冲激光器产生合适的斯托克灯连续体的数值和实验工作。在模拟中,沿光纤的脉冲传播由广义非线性Schrodinger方程管辖,包括来自群体速度分散的线性效应和自相位调制的非线性效应,延迟拉曼散射过程和自我陡峭。通过对称的分离步骤傅立叶方法集成等式。在模型中使用的最佳纤维相关模拟参数,例如非线性系数,分散系数和受刺激的拉曼散射贡献等的分数,并针对Geo_2掺杂纤维确定并确定。

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