| Literature DB >> 16229557 |
Pascal Krause1, Tillmann Klamroth, Peter Saalfrank.
Abstract
We report simulations of laser-driven many-electron dynamics by means of the time-dependent configuration interaction singles (doubles) approach. The method accounts for the correlation of ground and excited states, is capable of describing explicitly time-dependent, nonlinear phenomena, and is systematically improvable. Lithium cyanide serves as a molecular test system in which the charge distribution and hence the dipole moment are shown to be switchable, in a controlled fashion, by (a series of) laser pulses which induce selective, state-to-state electronic transitions. One focus of our time-dependent calculations is the question of how fast the transition from the ionic ground state to a specific excited state that is embedded in a multitude of other states can be made, without creating an electronic wave packet.Entities:
Year: 2005 PMID: 16229557 DOI: 10.1063/1.1999636
Source DB: PubMed Journal: J Chem Phys ISSN: 0021-9606 Impact factor: 3.488