학술논문

Time-dependent multiconfiguration self-consistent-field and time-dependent optimized coupled-cluster methods for intense laser-driven multielectron dynamics.
Document Type
Article
Source
Canadian Journal of Chemistry. Sep2023, Vol. 101 Issue 9, p698-709. 12p.
Subject
*GAUGE invariance
*ATTOSECOND pulses
*HARMONIC generation
*VARIATIONAL principles
*TUNNEL design & construction
*ATOMS
Language
ISSN
0008-4042
Abstract
We reviewed the time-dependent multiconfiguration self-consistent-field (TD-MCSCF) method and the time-dependent optimized coupled-cluster (TD-OCC) method for first-principles simulations of high-field phenomena such as tunneling ionization and high-order harmonic generation in atoms and molecules irradiated by a strong laser field. These methods provide a flexible and systematically improvable description of the multielectron dynamics by expressing the all-electron wavefunction by configuration interaction expansion or coupled-cluster expansion, using time-dependent one-electron orbital functions. The time-dependent variational principle plays a key role in deriving these methods while satisfying gauge invariance and Ehrenfest theorem. The real-time/real-space implementation with an absorbing boundary condition enables the simulation of high-field processes involving multiple excitation and ionization. We present a detailed, comprehensive discussion of such features of the TD-MCSCF and TD-OCC methods. [ABSTRACT FROM AUTHOR]