Pedersen Thomas Bondo, Kristiansen Håkon Emil, Bodenstein Tilmann, Kvaal Simen, Schøyen Øyvind Sigmundson
Hylleraas Centre for Quantum Molecular Sciences, Department of Chemistry, University of Oslo, N-0315 Oslo, Norway.
Department of Physics, University of Oslo, N-0315 Oslo, Norway.
J Chem Theory Comput. 2021 Jan 12;17(1):388-404. doi: 10.1021/acs.jctc.0c00977. Epub 2020 Dec 18.
We demonstrate theoretically and numerically that laser-driven many-electron dynamics, as described by bivariational time-dependent coupled-cluster (CC) theory, may be analyzed in terms of stationary-state populations. Projectors heuristically defined from linear response theory and equation-of-motion CC theory are proposed for the calculation of stationary-state populations during interaction with laser pulses or other external forces, and conservation laws of the populations are discussed. Numerical tests of the proposed projectors, involving both linear and nonlinear optical processes for He and Be atoms and for LiH, CH, and LiF molecules show that the laser-driven evolution of the stationary-state populations at the coupled-cluster singles-and-doubles (CCSD) level is very close to that obtained by full configuration interaction (FCI) theory, provided that all stationary states actively participating in the dynamics are sufficiently well approximated. When double-excited states are important for the dynamics, the quality of the CCSD results deteriorates. Observing that populations computed from the linear response projector may show spurious small-amplitude, high-frequency oscillations, the equation-of-motion projector emerges as the most promising approach to stationary-state populations.
我们通过理论和数值方法证明,如双变分含时耦合簇(CC)理论所描述的激光驱动多电子动力学,可以根据稳态布居进行分析。我们提出了从线性响应理论和运动方程CC理论启发式定义的投影算符,用于计算与激光脉冲或其他外力相互作用期间的稳态布居,并讨论了布居的守恒定律。对所提出的投影算符的数值测试,涉及He和Be原子以及LiH、CH和LiF分子的线性和非线性光学过程,结果表明,在耦合簇单双激发(CCSD)水平下,稳态布居的激光驱动演化与通过全组态相互作用(FCI)理论得到的结果非常接近,前提是所有积极参与动力学的稳态都得到了充分良好的近似。当双激发态对动力学很重要时,CCSD结果的质量会下降。观察到从线性响应投影算符计算出的布居可能会显示出虚假的小幅度高频振荡,运动方程投影算符成为计算稳态布居最有前景的方法。