Dynamical characteristics of Rydberg electrons released by a weak electric field
arXiv:1507.06751 · doi:10.1103/PhysRevLett.116.143006
Abstract
The dynamics of ultra-slow electrons in the combined potential of an ionic core and a static electric field is discussed. With state-of-the-art detection it is possible to create such electrons through strong intense-field photo-absorption and to detect them via high-resolution time-of-flight spectroscopy despite their very low kinetic energy. The characteristic feature of their momentum spectrum, which emerges at the same position for different laser orientations, is derived and could be revealed experimentally with an energy resolution of the order of 1meV.
5 pages, 5 figures
References in corpus (1)
Cited by in corpus (5)
- Magnetic fields alter tunneling in strong-field ionization
- Treating Branch Cuts in Quantum Trajectory Models for Photoelectron Holography
- Localizing High-Lying Rydberg Wave Packets with Two-Color Laser Fields
- Analytical approach to Coulomb focusing in strong field ionization
- Origin of high energy enhancement of photoelectron spectra in tunneling ionization