Maximum information photoelectron metrology
arXiv:1503.08308 · doi:10.1103/PhysRevA.92.013412
Abstract
Photoelectron interferograms, manifested in photoelectron angular distributions (PADs), are a high-information, coherent observable. In order to obtain the maximum information from angle-resolved photoionization experiments it is desirable to record the full, 3D, photoelectron momentum distribution. Here we apply tomographic reconstruction techniques to obtain such 3D distributions from multiphoton ionization of potassium atoms, and fully analyse the energy and angular content of the 3D data. The PADs obtained as a function of energy indicate good agreement with previous 2D data and detailed analysis [Hockett et. al., Phys. Rev. Lett. 112, 223001 (2014)] over the main spectral features, but also indicate unexpected symmetry-breaking in certain regions of momentum space, thus revealing additional continuum interferences which cannot otherwise be observed. These observations reflect the presence of additional ionization pathways and, most generally, illustrate the power of maximum information measurements of this coherent observable.
References in corpus (4)
- Formation of very low energy states crossing the ionization threshold of argon atoms in strong mid-infrared fields
- Momentum space tomographic imaging of photoelectrons
- Complete photoionization experiments via ultra-fast coherent control with polarization-multiplexing
- Complete Photoionization Experiments via Ultrafast Coherent Control with Polarization Multiplexing II: Numerics & Analysis Methodologies
Cited by in corpus (6)
- Bootstrapping to the Molecular Frame with Time-domain Photoionization Interferometry
- Angle-resolved RABBIT: theory and numerics
- Quantum Beat Photoelectron Imaging Spectroscopy of Xe in the VUV
- Complete Photoionization Experiments via Ultrafast Coherent Control with Polarization Multiplexing II: Numerics & Analysis Methodologies
- Topical Review: Extracting Molecular Frame Photoionization Dynamics from Experimental Data
- Response to 'Comment on "Time delays in molecular photoionization"': Extended Discussion & Technical Notes