Photoinduced quantum molecular dynamics is numerically investigated using two different Schrödinger formulations based on adiabatic ("bare") and Floquet ("dressed") molecular state representations. Computer simulations for the two approaches are compared in terms of numerical accuracy and efficiency where special emphasis is laid on the limit of very short and intense laser pulses. The optical excitation of the HCl+ ion from the X 2Π to the A 2Σ+ state near resonance frequency is investigated as a model system. For a variety of pulse intensities and durations the final population transfer is reproduced accurately by a model based on seven Floquet states only. Elimination of the highly oscillatory terms from the resulting equations allows fo...
This is the published version, also available here: http://dx.doi.org/10.1063/1.442334.A practical a...
The development of intense XUV sources through free-electron lasers (FELs) and high-order harmonic g...
A time-dependent (TD), nonperturbative quantum fluid density functional equation of motion, develope...
The Floquet-based quantum-classical Liouville equation (F-QCLE) is presented as a novel theoretical ...
We develop adiabatic perturbation theory for quantum systems responding to short laser pulses, with ...
We present a time-dependent Floquet method for short pulses and arbitrary laser frequencies that use...
The advent of ultrafast laser science offers the unique opportunity to combine Floquet engineering w...
In ultrafast molecular sciences, short laser pulses are used to initiate and interrogate chemical an...
The combination of nonadiabatic Ehrenfest-path molecular dynamics (EMD) based on time-dependent dens...
18 pags., 3 figs.,The combination of time-dependent density functional theory and quantum optimal co...
The electronic excitation induced by ultrashort laser pulses and the subsequent photodissociation dy...
We present a simple way to incorporate a molecule-field interaction into non-adiabatic molecular dyn...
The time evolution of atoms or molecules under the influence of a pulse of a single mode Laser is mo...
Abstract. We develop a mechanism for the selective excitation of molecular vibrational states by Sho...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevA.33.1798.A Flo...
This is the published version, also available here: http://dx.doi.org/10.1063/1.442334.A practical a...
The development of intense XUV sources through free-electron lasers (FELs) and high-order harmonic g...
A time-dependent (TD), nonperturbative quantum fluid density functional equation of motion, develope...
The Floquet-based quantum-classical Liouville equation (F-QCLE) is presented as a novel theoretical ...
We develop adiabatic perturbation theory for quantum systems responding to short laser pulses, with ...
We present a time-dependent Floquet method for short pulses and arbitrary laser frequencies that use...
The advent of ultrafast laser science offers the unique opportunity to combine Floquet engineering w...
In ultrafast molecular sciences, short laser pulses are used to initiate and interrogate chemical an...
The combination of nonadiabatic Ehrenfest-path molecular dynamics (EMD) based on time-dependent dens...
18 pags., 3 figs.,The combination of time-dependent density functional theory and quantum optimal co...
The electronic excitation induced by ultrashort laser pulses and the subsequent photodissociation dy...
We present a simple way to incorporate a molecule-field interaction into non-adiabatic molecular dyn...
The time evolution of atoms or molecules under the influence of a pulse of a single mode Laser is mo...
Abstract. We develop a mechanism for the selective excitation of molecular vibrational states by Sho...
This is the published version, also available here: http://dx.doi.org/10.1103/PhysRevA.33.1798.A Flo...
This is the published version, also available here: http://dx.doi.org/10.1063/1.442334.A practical a...
The development of intense XUV sources through free-electron lasers (FELs) and high-order harmonic g...
A time-dependent (TD), nonperturbative quantum fluid density functional equation of motion, develope...