首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >The Role of Incoherent Scattering in Laser-Induced and Laser-Assisted Processes
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The Role of Incoherent Scattering in Laser-Induced and Laser-Assisted Processes

机译:非相干散射在激光诱导和激光辅助过程中的作用

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摘要

We use the S-matrix formalism in order to investigate the possible role of incoherent scattering in different processes in a strong laser field. In the cases of above-threshold ionization (ATI) of atoms and above-threshold detachment (ATD) of negative ions, we assume that the ionized (detached) electron may scatter off a target other than its parent ion (atom). We call such a process incoherent in order to distinguish it from the coherent rescattering of an ionized (detached) electron off its parent ion (atom) which occurs in high-order above-threshold ionization (HATI) and high-order above-threshold detachment (HATD) processes. The same line of reasoning can be applied to the laser-assisted processes, such as the laser-assisted electron-ion radiative recombination (LAR) and the laser-assisted electron-atom scattering (LAS). If the density of the ionic beam used in a LAR experiment is high, it is possible that the electron scatters off an ionic target and subsequently recombines with another ion. Analogously, the electron that scatters on an atom in the LAS process may scatter once more off another atom. We show that the contribution of these incoherent processes to the energy spectra can be higher than that of the corresponding coherent processes if the density of atomic (ionic) targets is high enough. The spectra of the incoherent processes have a cutoff-like behavior and the cutoff energies are higher than those of the corresponding coherent processes. These results are explained by semiclassical analysis.
机译:为了研究强激光场中不同过程中非相干散射的可能作用,我们使用了S-矩阵形式主义。在原子的阈值以上电离(ATI)和负离子的阈值以上脱离(ATD)的情况下,我们假设离子化(脱离)的电子可能会散射其目标母离子(原子)以外的目标。我们将这种过程称为非相干过程,是为了将其与离子化(分离的)电子从其母离子(原子)的相干散射区分开,后者在高阶阈值以上电离(HATI)和高阶阈值以上脱离中发生(HATD)流程。可以将相同的推理应用于激光辅助过程,例如激光辅助电子离子辐射复合(LAR)和激光辅助电子原子散射(LAS)。如果在LAR实验中使用的离子束密度很高,则电子可能会从离子靶上散射,然后与另一个离子复合。类似地,在LAS过程中在原子上散射的电子可能会再次从另一个原子上散射。我们表明,如果原子(离子)靶的密度足够高,则这些非相干过程对能谱的贡献可能会高于相应相干过程的贡献。非相干过程的光谱具有类似截止的行为,并且截止能量高于相应相干过程的能量。这些结果通过半经典分析来解释。

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