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首页> 外文期刊>Journal of Modern Optics >Probing time-resolved emission in laser-driven electron-multirescattering in a high-order harmonic generation
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Probing time-resolved emission in laser-driven electron-multirescattering in a high-order harmonic generation

机译:在高阶谐波生成中激光驱动电子式多力学中的时间分辨排放

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摘要

We present an ab initio study of quantitative extraction of the time-frequency spectra of multiple rescattering processes of the electrons driven by the mid-infrared laser field in a high-order harmonic generation (HHG). The HHG is calculated by solving the three-dimensional time-dependent Schrodinger equation by means of the time-dependent generalized pseudospectral method. We extend a synchrosqueezed transform (SST) technique to extract the individual contributions of multiple rescattering processes in HHG. Combining with an extended semiclassical analysis and the SST time-frequency spectrum, the role of quantum trajectories in multiple rescattering processes in HHG is clarified. We find that the SST allows us to distinguish the individual contribution of multiple rescattering processes in HHG and show the details of the spectral and temporal fine structures of the HHG, which provides an important tool for a deep understanding to the dynamics of multiple rescattering processes in HHG.
机译:我们介绍了由中红外激光器在高阶谐波生成(HHG)中由中红外激光场驱动的多个复位过程的时频谱的定量提取的AB Initim提取。通过求解三维时间依赖性Schrodinger方程来计算HHG,通过时间依赖于时间依赖的广义伪谱法。我们扩展了一个SynchroSqueezed变换(SST)技术,以提取HHG中多个重新示例过程的各个贡献。结合了扩展的半导体分析和SST时频谱,阐明了量子轨迹在HHG中多个复位过程中的作用。我们发现SST允许我们在HHG中区分多个重新分配过程的各个贡献,并显示HHG的频谱和时间细结构的细节,为深入了解多个重新发生过程的动态提供了一个重要的工具HHG。

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