论文标题
电子相关对氦气高谐波产生的影响:时间依赖于时间依赖的互动单身与时间相关的完整配置相互作用研究
Effects of electronic correlation on the high harmonic generation in helium: a time-dependent configuration interaction singles vs time-dependent full configuration interaction study
论文作者
论文摘要
在本文中,我们研究了完全电子相关性对受到极高强度激光脉冲的氦原子高谐波产生的影响。为此,我们使用与高斯基集耦合的量子化学方法对氦原子波函数进行实时传播。计算是在实时时间依赖性的配置交互框架中完成的,在两个级别的理论层面:与单个激发(TD-CIS,不相关的方法)和时间相关的完整配置交互(TD-FCI,完全相关的方法),并分析获得的HHG Speptra。电子波函数以壮观的基础集进行扩展,这些函数适合描述高度激发的连续体状态。我们还将TD-CI结果与单活性电子近似中的氦原子的基于网格的传播进行了比较。我们的结果表明,当包括动态电子相关性时,可以从例如在谐波高原的下部能量部分中的强度更恒定。但是,只有在理论水平不相关的水平上,基于基集使用足以再现最基本的特征,例如HHG截止位置,例如HHG截止位置,才能捕获此类效果。
In this paper, we investigate the effects of full electronic correlation on the high harmonic generation in the helium atom subjected to laser pulses of extremely high intensity. To do this, we perform real-time propagations of the helium atom wavefunction using quantum chemistry methods coupled to Gaussian basis sets. The calculations are done within the real-time time-dependent configuration interaction framework, at two levels of theory: time-dependent configuration interation with single excitations (TD-CIS, uncorrelated method) and time-dependent full configuration interaction (TD-FCI, fully correlated method), and analyse obtained HHG spectra. The electronic wavefunction is expanded in Dunning basis sets supplemented with functions adapted to describing highly excited continuum states. We also compare the TD-CI results with grid-based propagations of the helium atom within the single-active-electron approximation. Our results show when including the dynamical electron correlation, a noticeable improvement to the description of HHG can be achieved, in terms of e.g. a more constant intensity in the lower energy part of the harmonic plateau. However, such effects can be captured only if the basis set used suffices to reproduce the most basic features, such as the HHG cutoff position, at the uncorrelated level of theory.