Angle-resolved RABBIT: theory and numerics
arXiv:1703.08586 · doi:10.1088/1361-6455/aa7887
Abstract
Angle-resolved (AR) RABBIT measurements offer a high information content measurement scheme, due to the presence of multiple, interfering, ionization channels combined with a phase-sensitive observable in the form of angle and time-resolved photoelectron interferograms. In order to explore the characteristics and potentials of AR-RABBIT, a perturbative 2-photon model is developed; based on this model, example AR-RABBIT results are computed for model and real systems, for a range of RABBIT schemes. These results indicate some of the phenomena to be expected in AR-RABBIT measurements, and suggest various applications of the technique in photoionization metrology.
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Cited by in corpus (9)
- Attosecond-resolved photoionization of chiral molecules
- Fano's propensity rule in angle-resolved attosecond pump-probe photoionization
- Simulation of angular resolved RABBITT measurements in noble gas atoms
- Probing electronic wavefunctions by all-optical attosecond interferometry
- Ultrafast Molecular Frame Quantum Tomography
- Angle-resolved time delays for shake-up ionization of helium
- Topical Review: Extracting Molecular Frame Photoionization Dynamics from Experimental Data
- Anisotropic Molecular Photoemission Dynamics Part. I Wigner meets the RABBIT
- General properties of the RABBITT at parity mixing conditions