Physics – Atomic Physics
Scientific paper
2008-03-04
Phys. Rev. A 77, 043420 (2008)
Physics
Atomic Physics
14 pages, 10 figures; final version (acknowledgements and reference added, typos fixed)
Scientific paper
10.1103/PhysRevA.77.043420
We present accurate time-dependent ab initio calculations on fully differential and total integrated (generalized) cross sections for the nonsequential two-photon double ionization of helium at photon energies from 40 to 54 eV. Our computational method is based on the solution of the time-dependent Schroedinger equation and subsequent projection of the wave function onto Coulomb waves. We compare our results with other recent calculations and discuss the emerging similarities and differences. We investigate the role of electronic correlation in the representation of the two-electron continuum states, which are used to extract the ionization yields from the fully correlated final wave function. In addition, we study the influence of the pulse length and shape on the cross sections in time-dependent calculations and address convergence issues.
Burgdörfer Joachim
Collins Lee A.
Feist Johannes
Nagele Stefan
Pazourek Renate
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