Dynamical Bounds for Sturmian Schr\"{o}dinger Operators
Abstract
The Fibonacci Hamiltonian, that is a Schr\"{o}dinger operator associated to a quasiperiodical sturmian potential with respect to the golden mean has been investigated intensively in recent years. Damanik and Tcheremchantsev developed a method and find a non trivial dynamical upper bound for this model. In this paper, we use this method to generalize to a large family of Sturmian operators dynamical upper bounds and show at sufficently large coupling anomalous transport for operators associated to irrational number with a generic diophantine condition. As a counter example, we exhibit a pathological irrational number which do not verify this condition and show its associated dynamic exponent only has ballistic bound. Moreover, we establish a global lower bound for the lower box counting dimension of the spectrum that is used to obtain a dynamical lower bound for bounded density irrational numbers.
Cite
@article{arxiv.0906.1932,
title = {Dynamical Bounds for Sturmian Schr\"{o}dinger Operators},
author = {L. Marin},
journal= {arXiv preprint arXiv:0906.1932},
year = {2015}
}