Kondo effect and spin–orbit coupling in graphene quantum dots

Author:

Kurzmann AnnikaORCID,Kleeorin Yaakov,Tong ChuyaoORCID,Garreis RebekkaORCID,Knothe Angelika,Eich Marius,Mittag Christopher,Gold CarolinORCID,de Vries Folkert KornelisORCID,Watanabe KenjiORCID,Taniguchi TakashiORCID,Fal’ko VladimirORCID,Meir Yigal,Ihn ThomasORCID,Ensslin KlausORCID

Abstract

AbstractThe Kondo effect is a cornerstone in the study of strongly correlated fermions. The coherent exchange coupling of conduction electrons to local magnetic moments gives rise to a Kondo cloud that screens the impurity spin. Here we report on the interplay between spin–orbit interaction and the Kondo effect, that can lead to a underscreened Kondo effects in quantum dots in bilayer graphene. More generally, we introduce a different experimental platform for studying Kondo physics. In contrast to carbon nanotubes, where nanotube chirality determines spin–orbit coupling breaking the SU(4) symmetry of the electronic states relevant for the Kondo effect, we study a planar carbon material where a small spin–orbit coupling of nominally flat graphene is enhanced by zero-point out-of-plane phonons. The resulting two-electron triplet ground state in bilayer graphene dots provides a route to exploring the Kondo effect with a small spin–orbit interaction.

Funder

EC | Horizon 2020 Framework Programme

MEXT | JST | Core Research for Evolutional Science and Technology

Israel Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

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