[Zurück]


Zeitschriftenartikel:

M. Spanner, S. Gräfe, S. Chelkowski, D. Pavicic, M. Meckel, D. Zeidler, A.B. Bardon, B. Ulrich, A. D. Bandrauk, D Villeneuve, R. Dörner, P. Corkum, A. Staudte:
"Coulomb asymmetry and sub-cycle electron dynamics in multiphoton multiple ionization of H2";
Journal of Physics B: Atomic , Molecular and Optical Physics, 45 (2012), 19; S. 194011-1 - 194011-10.



Kurzfassung englisch:
We present a systematic study of the molecular-frame photo-electron angular distributions produced by multiphoton double ionization of H2 using circularly polarized 800 nm, femtosecond laser pulses. We compare experimental results to numerical results obtained from a reduced-dimensionality time-dependent Schrödinger equation (TDSE) model. In addition, we implement a TDSE-like version of the strong-field approximation to isolate the effect of the parent ion's Coulomb potential on the continuum electron in our simulations. Thereby we identify the contributions of the parent ion potential, and light induced sub-optical cycle electron dynamics on the observable energy and angular distributions.


"Offizielle" elektronische Version der Publikation (entsprechend ihrem Digital Object Identifier - DOI)
http://dx.doi.org/10.1088/0953-4075/45/19/194011



Zugeordnete Projekte:
Projektleitung Stefanie Gräfe:
Korrelierte Elektronendynamik in ultrakurzen, starken mehr-Farben Laserfeldern


Erstellt aus der Publikationsdatenbank der Technischen Universität Wien.