Quantum scattering problem without partial-wave analysis
Vladimir S. Melezhik
Abstract
We have suggested a method for treating different quantum few-body dynamics without usual partial-wave analysis. With this approach new results were obtained in the physics of ultracold atom-atom collisions and ionization and excitation/deexitation of helium ions. The developed computational scheme opens new possibilities for analysis the actual problem of ultracold atom wave-packets collisions in strong laser or magnetic confinement.
Create a lesson
Related papers
Cancellation of D2 line transitions of alkali-metal atoms by magnetic-field values
Artur Aleksanyan, Susanna Petrosyan, Emil Gazazyan
Controlling light shifts in chip-scale atomic beam clocks
Alexander Staron, Mingwu Lu, Ruwan Senaratne et al.
Estimating the ground-state hyperfine shifts of group-1 atoms due to long-range collisions, static electric fields, and nearby surfaces
B. H. McGuyer, K. Choksi, N. VonHeeder et al.
Photoelectron interferometry with spectrally shaped polychromatic infrared pulses
E. A. Boati, G. Arvidsson, M. Ammitzböll et al.
Coherently Enhanced Cherenkov Radiation by Highly Relativistic and Ultra-Compact Electron Beams
S. Kim, C. Müller, A. B. Voitkiv
Quantified absorption of laser light by silver atoms in a hollow-cathode lamp
Matthew P. Wilde, Richard G. Wolfendale, Mark Bengyel et al.