Two-channel Kondo tunneling in triple quantum dot
Abstract
The effective spin Hamiltonian of a triple quantum dot with odd electron occupation weakly connected in series with left () and right () metal leads is composed of two-channel exchange and co-tunneling terms. Renormalization group equations for the corresponding three exchange constants , and are solved (to third order). Since is relevant, the system is mapped on an anisotropic two-channel Kondo problem. The structure of the conductance as function of temperature and gate voltage implies that in the weak and intermediate coupling regimes, two-channel Kondo physics persists at temperatures as low as several . At even electron occupation, the number of channels equals twice the spin of the triple dot (hence it is a fully screened impurity).
Cite
@article{arxiv.cond-mat/0211281,
title = {Two-channel Kondo tunneling in triple quantum dot},
author = {T. Kuzmenko and K. Kikoin and Y. Avishai},
journal= {arXiv preprint arXiv:cond-mat/0211281},
year = {2007}
}
Comments
4 revtex pages with 4 .eps figures