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Spatiotemporal Dynamics of the Amplitude-Phase Characteristics of Stimulated Raman Scattering

机译:拉曼散射的幅相特性的时空动力学

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摘要

A numerical model describing the processes of generation of stimulated Raman scattering (SRS) is developed; the calculations are performed and different scenarios of generation of Stokes radiation in compressed hydrogen are analyzed. The spatiotemporal profiels of intensities and phases of interacting waves, the radiation spectra, and the functions of spatial coherence are obtained by way of numerical simulation for different conditions of SRS generation. A substantial difference between these parameters in the cases of nonstationary and quasi-stationary regimes of SRS generation is revealed. The nonstationary regime of generation is characterized by more complicated spatiotemporal dependences than the quasi-stationary regime. However, in the quasi-stationary regime, the phase of the Stokes wave radiation varies over a larger interval during the pump pulse duration, which leads to a decrease in the degree of spatial coherence to lower values. For both regimes of generation, the value of the degree of spatial coherence decreases with an increase in the conversion factor to a certain threshold value and then stabilizes, which is in agreement with experimental data. The presence of a moving focus of SRS focusing of the Stokes beam is demonstrated. This effect is governed by the spatiotemporal shape of the pump beam intensity (the Gaussian profile), by a high SRS gain, and by the processes of diffraction. The results of the numerical simulation are in qualitative and quantitative agreement with experimental data obtained previously.
机译:建立了描述受激拉曼散射(SRS)产生过程的数值模型;进行计算并分析在压缩氢气中产生斯托克斯辐射的不同场景。通过数值模拟,针对不同的SRS产生条件,获得了相互作用波的强度和相位,辐射谱和空间相干函数的时空分布。揭示了在SRS生成的非平稳和准平稳状态下,这些参数之间的实质差异。相较于准平稳状态,非平稳状态的产生具有更复杂的时空依赖性。然而,在准平稳状态下,斯托克斯波辐射的相位在泵浦脉冲持续时间内以较大的间隔变化,这导致空间相干程度降低到较低的值。对于两种生成方式,空间相干度的值都随着转换因子的增加而减小到某个阈值,然后稳定下来,这与实验数据一致。演示了斯托克斯光束的SRS聚焦的移动焦点的存在。这种影响取决于泵浦光束强度的时空形状(高斯分布),高SRS增益以及衍射过程。数值模拟的结果与先前获得的实验数据在定性和定量上吻合。

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