论文标题

协调强大场电离的隧道时间延迟的矛盾方法

Reconciling conflicting approaches for the tunneling time delay in strong field ionization

论文作者

Klaiber, Michael, Lv, Q. Z., Sukiasyan, S., Canário, Daniel Bakucz, Hatsagortsyan, Karen Z., Keitel, Christoph H.

论文摘要

最近的几项Attoclock实验研究了通过极为精确的光电子动量光谱学通过机械机械诱导的隧穿电离时间延迟的基本问题。对那些toclock实验结果的解释是有争议的,因为激光和库仑场的纠缠不允许在没有无可争议的近似值的情况下进行理论处理。半经典传播的方法与隧道波功能相匹配,准居性智慧理论,分析R-Matrix理论,反向流体方法和损坏的障碍概念理论是领先的概念方法,这是针对此问题的处理,似乎对此问题进行了矛盾的结论。为了解决不同方法的矛盾结论,我们考虑了一种非常简单的隧道场景,这种情况并不困扰着由于原子核的库仑潜力而造成的并发症,避免了随后的有争议的近似值,因此使我们能够明确地确定隧道时间延迟的起源。

Several recent attoclock experiments have investigated the fundamental question of a quantum mechanically induced time delay in tunneling ionization via extremely precise photoelectron momentum spectroscopy. The interpretations of those attoclock experimental results were controversially discussed, because the entanglement of the laser and Coulomb field did not allow for theoretical treatments without undisputed approximations. The method of semiclassical propagation matched with the tunneled wavefunction, the quasistatic Wigner theory, the analytical R-matrix theory, the backpropagation method, and the under-the-barrier recollision theory are the leading conceptual approaches put forward to treat this problem, however, with seemingly conflicting conclusions on the existence of a tunneling time delay. To resolve the contradicting conclusions of the different approaches, we consider a very simple tunneling scenario which is not plagued with complications stemming from the Coulomb potential of the atomic core, avoids consequent controversial approximations and, therefore, allows us to unequivocally identify the origin of the tunneling time delay.

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