Rings and Coulomb boxes in dissipative environments
Abstract
We study a particle on a ring in presence of a dissipative Caldeira-Leggett environment and derive its response to a DC field. We show how this non-equilibrium response is related to a flux averaged equilibrium response. We find, through a 2-loop renormalization group analysis, that a large dissipation parameter \eta flows to a fixed point \eta^R=\hbar/2\pi. We also reexamine the mapping of this problem to that of the Coulomb box and show that the relaxation resistance, of recent interest, is quantized for large \eta. For finite \eta>\eta^R we find that a certain average of the relaxation resistance is quantized. We propose a Coulomb box experiment to measure a quantized noise.
Keywords
Cite
@article{arxiv.1207.2559,
title = {Rings and Coulomb boxes in dissipative environments},
author = {Yoav Etzioni and Baruch Horovitz and Pierre Le Doussal},
journal= {arXiv preprint arXiv:1207.2559},
year = {2013}
}
Comments
23 pages, 4 figures. Appendix E has been added, some detailed definitions and references were added