论文标题
隧道电离中的亚周期时间分辨的非酮动力学
Sub-cycle time-resolved nondipole dynamics in tunneling ionization
论文作者
论文摘要
根据klein-gordon方程的eikonal近似,使用相对论库仑校正的强场近似(SFA)研究椭圆极化激光场中的隧道电离电离中的电子非酮动力学。我们计算了在过度和非绝热方案中在激光场的不同椭圆方面计算触摸角度分辨的光线动量分布,并通过改进的Simpleman模型对其进行分析。检查了纵向和横向动量成分之间的非酮相关性。通过SFA计算出有关可用实验结果以及改进的Simpleman模型的光电子动量分布的偏差,并以连续体和级词中的非绝热以及库仑效应来讨论和解释。讨论了实验观察的有利前景。
The electron nondipole dynamics in tunneling ionization in an elliptically polarized laser field is investigated theoretically using a relativistic Coulomb-corrected strong-field approximation (SFA) based on the eikonal approximation of the Klein-Gordon equation. We calculate attoclock angle-resolved light-front momentum distributions at different ellipticities of the laser field in quasistatic and nonadiabatic regimes and analyze them with an improved Simpleman model. The nondipole correlations between longitudinal and transverse momentum components are examined. Deviations of the photoelectron momentum distribution calculated via SFA with respect to the available experimental results as well as with the improved Simpleman model are discussed and interpreted in terms of nonadiabatic as well as Coulomb effects in the continuum and under-the-barrier. The favorable prospects of an experimental observation are discussed.