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Numerical modeling of the intracavity coherent anti-Stokes Raman laser

机译:内部腔内相干反斯托克斯拉曼激光的数值模拟

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The space-dependent rate equations of intracavity coherent anti-Stokes Raman lasers are deduced by adding the termdescribing the coherent anti-Stokes scattering effect to the rate equations of the intracavity Raman laser. The intracavity photon densities of the fundamental and first Stokes lights and the initial population-inversion density are assumed to be Gaussian spatial distributions. The rate equations are normalized and solved numerically, and a group of general curves is generated. The influence of normalized parameters on the pulse parameters of the output anti-Stokes laser is investigated. The normalized rate-equation theory and numerical results will be of help in the design of high-performance intracavity coherent anti-StokesRaman lasers. (C) 2020 Optical Society of America
机译:通过在腔内拉曼激光器的速率方程中加入描述相干反斯托克斯散射效应的项,推导了腔内相干反斯托克斯拉曼激光器的空间相关速率方程。假设基本光和第一斯托克斯光的腔内光子密度以及初始粒子数反转密度为高斯空间分布。对速率方程进行归一化和数值求解,并生成一组通用曲线。研究了归一化参数对输出反斯托克斯激光器脉冲参数的影响。归一化速率方程理论和数值结果将有助于设计高性能内腔相干反斯托克斯拉曼激光器。(C) 2020美国光学学会

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