Singular conductance of a spin 1 quantum dot
Abstract
We interpret the recent observation of a zero-bias anomaly in spin-1 quantum dots in terms of an underscreened Kondo effect. Although a spin-1 quantum dots are expected to undergo a two-stage quenching effect, in practice the log normal distribution of Kondo temperatures leads to a broad temperature region dominated by underscreened Kondo physics. General arguments, based on the asymptotic decoupling between the partially screened moment and the leads, predict a singular temperature and voltage dependence of the conductance and differential conductance , resulting in and . Using a Schwinger boson approach, we show how these qualitative expectations are borne out in a detailed many body calculation.
Cite
@article{arxiv.cond-mat/0410001,
title = {Singular conductance of a spin 1 quantum dot},
author = {A. Posazhennikova and P. Coleman},
journal= {arXiv preprint arXiv:cond-mat/0410001},
year = {2009}
}
Comments
Four pages, four figures. Paper revised with additional references added in response to feedback from readers