Manifestation of quantum chaos on ordered structures by scattering techniques: application to Low-Energy Electron Diffraction
Abstract
We analyze statistical probability distributions of intensities collected by diffraction techniques like Low-Energy Electron Diffraction. A simple theoretical model based in hard-sphere potentials and LEED formalism is investigated for different values of relevant parameters: energy, angle of incidence, muffin-tin potential radius, maximum spherical component , number of stacked layers, and full multiple-scattering or kinematic model. Given a complex enough system (e.g., including multiple scattering by at least two Bravais lattices), the computed probability distributions agree rather well with a one, characteristic of the Gaussian Unitary Ensemble universality class associated to quantum chaos. A hypothesis on the possible impact of the chaoticity of wavefunctions on correlation factors is tested against the behaviour of the Pendry R-factor and the Root Mean Squared Deviation factor.
Keywords
Cite
@article{arxiv.cond-mat/9807036,
title = {Manifestation of quantum chaos on ordered structures by scattering techniques: application to Low-Energy Electron Diffraction},
author = {P. L. de Andres and J. A. Verges},
journal= {arXiv preprint arXiv:cond-mat/9807036},
year = {2009}
}
Comments
LaTex, 8 pages, 13 figures, http://www.icmm.csic.es/Pandres/pedro.htm