论文标题

在精确的单电子理论中描述的强场电离的多电子效应

Many-electron effects of strong-field ionization described in an exact one-electron theory

论文作者

Kocák, Jakub, Schild, Axel

论文摘要

如果感兴趣的多电子系统的单电子可观察物,则可以通过具有有效势能的单电子动力学来代表多电子动力学。这种降低的形式主义由精确的电子分解(EEF)提供。我们研究了由超肌和超短激光脉冲电离的原子模型的EEF有效电位的时间依赖性特征,以了解开发计算上可行近似所需的内容。发现最简单的近似值,即所谓的时间独立的条件振幅(TICA)近似值,是单活动电子(SAE)的互补方法,因为它可以很好地重现激光场的高光子频率或大型Keldysh参数的高光子频率。对于相对较低的激光场或较小的Keldysh参数,我们发现原子核心区域中激发态动力学会导致EEF电位的时间依赖性电离屏障。需要准确地描述屏障的时间依赖性,以正确地对多电子效应进行正确建模,我们得出的结论是,TICA近似的多状态扩展是如何实现这一目标的可能途径。通常,我们的研究对强场电离的单电子图片进行了不同的启示,并表明,只要可以成功地建模核心动力学,就可以通过求解单电子Schrödinger方程来包括许多电子效应。

If one-electron observables of a many-electron system are of interest, a many-electron dynamics can be represented exactly by a one-electron dynamics with effective potentials. The formalism for this reduction is provided by the Exact Electron Factorization (EEF). We study the time-dependent features of the EEF effective potentials for a model of an atom ionized by an ultrastrong and ultrashort laser pulse, with the aim of understanding what is needed to develop computationally feasible approximations. It is found that the simplest approximation, the so-called time-independent conditional amplitude (TICA) approximation, is complementary to single-active electron (SAE) approaches as it reproduced the exact dynamics well for high photon frequencies of the laser field or large Keldysh parameter. For relatively low frequencies of the laser field or for smaller Keldysh parameters, we find that excited state dynamics in the core region of the atom leads to a time-dependent ionization barrier in the EEF potential. The time-dependence of the barrier needs to be described accurately to correctly model many-electron effects, and we conclude that a multi-state extension of the TICA approximation is a possible route how this can be achieved. In general, our study sheds a different light on one-electron pictures of strong-field ionization and shows that many-electron effects for such processes may be included by solving a one-electron Schrödinger equation, provided the core dynamics can be modeled successfully.

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