Sensitivity to perturbations in a quantum chaotic billiard
Abstract
The Loschmidt echo (LE) measures the ability of a system to return to the initial state after a forward quantum evolution followed by a backward perturbed one. It has been conjectured that the echo of a classically chaotic system decays exponentially, with a decay rate given by the minimum between the width of the local density of states and the Lyapunov exponent. As the perturbation strength is increased one obtains a cross-over between both regimes. These predictions are based on situations where the Fermi Golden Rule (FGR) is valid. By considering a paradigmatic fully chaotic system, the Bunimovich stadium billiard, with a perturbation in a regime for which the FGR manifestly does not work, we find a cross over from to Lyapunov decay. We find that, challenging the analytic interpretation, these conjetures are valid even beyond the expected range.
Keywords
Cite
@article{arxiv.nlin/0111051,
title = {Sensitivity to perturbations in a quantum chaotic billiard},
author = {Diego A. Wisniacki and Eduardo Vergini and Horacio M. Pastawski and Fernando M. Cucchietti},
journal= {arXiv preprint arXiv:nlin/0111051},
year = {2009}
}
Comments
Significantly revised version. To appear in Physical Review E Rapid Communications