论文标题
Freeman共鸣的子轰炸途径
Sub-barrier pathways to Freeman resonances
论文作者
论文摘要
弗里曼共鸣的问题[R. R. Freeman \ textit {et al。},物理。莱特牧师。 \ textbf {59},1092(1987)]由于在电离过程中激发态的瞬时群体而增强了强场电离。提出了一个直观的模型,该模型解释了非绝热隧道电离中中间人群中中间种群的机制,该机制通过垒下的回忆和重组来解释。理论模型基于扰动强场近似(SFA),其中二阶SFA中描述了子轰炸界限结合途径,而通过额外的扰动步骤,从激发态进行进一步的电离。由于源自不同激光循环的激发振幅的建设性干扰,因此显示了电离的增强。应用模型在强场电离中对弗里曼共振期间的电子动力学提供了直观的理解,并可以增强过程和可能应用于相关过程的方法。
The problem of Freeman resonances [R. R. Freeman \textit{et al.}, Phys. Rev. Lett. \textbf{59}, 1092 (1987)] when strong field ionization is enhanced due to the transient population of excited states during the ionization, is revisited. An intuitive model is put forward which explains the mechanism of the intermediate population of excited states during nonadiabatic tunneling ionization via the under-the-barrier recollision and recombination. The theoretical model is based on perturbative strong-field approximation (SFA), where the sub-barrier bound-continuum-bound pathway is described in the second-order SFA, while the further ionization from the excited state by an additional perturbative step. The enhancement of ionization is shown to arise due to the constructive interference of contributions into the excitation amplitudes originating from different laser cycles. The applied model provides an intuitive understanding of the electron dynamics during a Freeman resonance in strong-field ionization, as well as means of enhancing the process and possible applications to related processes.