A non-perturbative multi-photon picture of strong field ionization
POSTER
Abstract
We outline the non-perturbative multi-photon picture of strong-field ionization. Processes are described in terms of angular momentum selection rules and photon absorption pathways as in the perturbation theory. We apply the framework to separate out ionization pathways responsible for the enhanced ionization of specific initial p−states interacting with circularly polarized fields at wavelengths spanning from the single photon to the tunneling limits of ionization. The approach is unique and gives a unified description of ionization by both perturbative short-wavelength and non-perturbative long-wavelength radiation fields.
*(S.W. and A.S.L.) DOE Investigator-Initiated Research grant, Award ID DE-SC0022093; (S.W., B.G. and A.B.) DOE Division of Chemical Sciences, Atomic, Molecular and Optical Sciences Program, Award ID DE-SC0001771; (S.W., B.G. and A.B.) NSF Award ID PHY-1734006 for computer resources used for part of the present calculations
Presenters
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Spencer R Walker
- Department of Physics, The Ohio State University
- JILA & Department of Physics University of Colorado, Boulder
- Ohio State University