Interactions and Interference in Quantum Dots: Kinks in Coulomb Blockade Peak Positions
Abstract
We investigate the spin of the ground state of a geometrically confined many-electron system. For atoms, shell structure simplifies this problem-- the spin is prescribed by the well-known Hund's rule. In contrast, quantum dots provide a controllable setting for studying the interplay of quantum interference and electron-electron interactions in general cases. In a generic confining potential, the shell-structure argument suggests a singlet ground state for an even number of electrons. The interaction among the electrons produces, however, accidental occurrences of spin-triplet ground states, even for weak interaction, a limit which we analyze explicitly. Variaton of an external parameter causes sudden switching between these states and hence a kink in the conductance. Experimental study of these kinks would yield the exchange energy for the ``chaotic electron gas''.
Cite
@article{arxiv.cond-mat/9907151,
title = {Interactions and Interference in Quantum Dots: Kinks in Coulomb Blockade Peak Positions},
author = {H. U. Baranger and D. Ullmo and L. I. Glazman},
journal= {arXiv preprint arXiv:cond-mat/9907151},
year = {2009}
}
Comments
4 pages, 2 ps figs included using epsf.sty. Revision: added important reference and consequent text changes, other small corrections