Duality in potential curve crossing: Application to quantum coherence
Abstract
A field dependent gauge transformation connects between the adiabatic and diabatic pictures in the (Landau-Zener-Stueckelberg) potential curve crossing problem. It is pointed out that weak and strong potential curve crossing interactions are interchanged under this transformation, and thus realizing a naive strong and weak duality. A reliable perturbation theory should thus be formulated in the both limits of weak and strong interactions. In fact, main characteristics of the potential crossing phenomena such as the Landau-Zener formula including its numerical coefficient are well-described by simple (time-independent) perturbation theory without referring to Stokes phenomena. We also show that quantum coherence in a double well potential is generally suppressed by the effect of potential curve crossing, which is analogous to the effect of Ohmic dissipation on quantum coherence.
Cite
@article{arxiv.hep-th/9704062,
title = {Duality in potential curve crossing: Application to quantum coherence},
author = {Kazuo Fujikawa and Hiroshi Suzuki},
journal= {arXiv preprint arXiv:hep-th/9704062},
year = {2009}
}
Comments
23 pages, 4 figures, REVTeX. Title was changed. The final version to apper in Phys. Rev. A