English

Kondo effect in systems with dynamical symmetries

Strongly Correlated Electrons 2007-05-23 v2

Abstract

This paper is devoted to a systematic exposure of the Kondo physics in quantum dots for which the low energy spin excitations consist of a few different spin multiplets SiMi>|S_{i}M_{i}>. Under certain conditions (to be explained below) some of the lowest energy levels ESiE_{S_{i}} are nearly degenerate. The dot in its ground state cannot then be regarded as a simple quantum top in the sense that beside its spin operator other dot (vector) operators Rn{\bf R}_{n} are needed (in order to fully determine its quantum states), which have non-zero matrix elements between states of different spin multiplets <SiMiRnSjMj>0<S_{i}M_{i} |{\bf R}_{n}|S_{j}M_{j} > \ne 0. These "Runge-Lenz" operators do not appear in the isolated dot-Hamiltonian (so in some sense they are "hidden"). Yet, they are exposed when tunneling between dot and leads is switched on. The effective spin Hamiltonian which couples the metallic electron spin s{\bf s} with the operators of the dot then contains new exchange terms, JnsRnJ_{n} {\bf s} \cdot {\bf R}_{n} beside the ubiquitous ones JisSiJ_{i} {\bf s}\cdot {\bf S}_{i}. The operators Si{\bf S}_{i} and Rn{\bf R}_{n} generate a dynamical group (usually SO(n)). Remarkably, the value of nn can be controlled by gate voltages, indicating that abstract concepts such as dynamical symmetry groups are experimentally realizable. Moreover, when an external magnetic field is applied then, under favorable circumstances, the exchange interaction involves solely the Runge-Lenz operators Rn{\bf R}_{n} and the corresponding dynamical symmetry group is SU(n). For example, the celebrated group SU(3) is realized in triple quantum dot with four electrons.

Keywords

Cite

@article{arxiv.cond-mat/0306670,
  title  = {Kondo effect in systems with dynamical symmetries},
  author = {Tetyana Kuzmenko and Konstantin Kikoin and Yshai Avishai},
  journal= {arXiv preprint arXiv:cond-mat/0306670},
  year   = {2007}
}

Comments

24 two-column pages

R2 v1 2026-07-22T10:51:52.253Z