Time-Dependent B-Spline R-Matrix Approach to Double Ionization of Atoms by XUV Laser Pulses
arXiv:0901.2373 · doi:10.1088/0953-4075/42/13/134015
Abstract
We present an {\it ab initio} and non-perturbative time-dependent approach to the problem of double ionization of a general atom driven by intense XUV laser pulses. After using a highly flexible -Spline -matrix method to generate field-free Hamiltonian and electric dipole matrices, the initial state is propagated in time using an efficient Arnoldi-Lanczos scheme. Test calculations for double ionization of He by a single laser pulse yield good agreement with benchmark results obtained with other methods. The method is then applied to two-color pump-probe processes, for which momentum and energy distributions of the two outgoing electrons are presented.
13 pages, 4 figures