Dynamical tunneling in mushroom billiards
Chaotic Dynamics
2008-05-05 v2
Abstract
We study the fundamental question of dynamical tunneling in generic two-dimensional Hamiltonian systems by considering regular-to-chaotic tunneling rates. Experimentally, we use microwave spectra to investigate a mushroom billiard with adjustable foot height. Numerically, we obtain tunneling rates from high precision eigenvalues using the improved method of particular solutions. Analytically, a prediction is given by extending an approach using a fictitious integrable system to billiards. In contrast to previous approaches for billiards, we find agreement with experimental and numerical data without any free parameter.
Cite
@article{arxiv.0801.2833,
title = {Dynamical tunneling in mushroom billiards},
author = {A. Bäcker and R. Ketzmerick and S. Löck and M. Robnik and G. Vidmar and R. Höhmann and U. Kuhl and H. -J. Stöckmann},
journal= {arXiv preprint arXiv:0801.2833},
year = {2008}
}
Comments
4 pages, 4 figures