Cold Atomic Collisions: Coherent Control of Penning and Associative Ionization
Chemical Physics
2009-11-13 v1 Atomic Physics
Abstract
Coherent Control techniques are computationally applied to cold (1mK < T < 1 K) and ultracold (T < 1 microK) Ne*(3s,3P2) + Ar(1S0) collisions. We show that by using various initial superpositions of the Ne*(3s,3P2) M = {-2,-1,0,1,2} Zeeman sub-levels it is possible to reduce the Penning Ionization (PI) and Associative Ionization (AI) cross sections by as much as four orders of magnitude. It is also possible to drastically change the ratio of these two processes. The results are based on combining, within the "Rotating Atom Approximation", empirical and ab-initio ionization-widths.
Keywords
Cite
@article{arxiv.physics/0610131,
title = {Cold Atomic Collisions: Coherent Control of Penning and Associative Ionization},
author = {Carlos A. Arango and Moshe Shapiro and Paul Brumer},
journal= {arXiv preprint arXiv:physics/0610131},
year = {2009}
}
Comments
4 pages, 2 tables, 2 figures