Kondo cloud conductance in cavity-coupled quantum dots with asymmetric barriers

Fuente: arXiv
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Autori principali: Fossion, D., Champain, V., Mohapatra, S., Cavanna, A., Gennser, U., Mailly, D., Hackens, B., Jansen, L., Jehl, X., De Franceschi, S., Brun-Barrière, B., Sellier, H.
Natura: Preprint
Pubblicazione: 2025
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author Fossion, D.
Champain, V.
Mohapatra, S.
Cavanna, A.
Gennser, U.
Mailly, D.
Hackens, B.
Jansen, L.
Jehl, X.
De Franceschi, S.
Brun-Barrière, B.
Sellier, H.
author_facet Fossion, D.
Champain, V.
Mohapatra, S.
Cavanna, A.
Gennser, U.
Mailly, D.
Hackens, B.
Jansen, L.
Jehl, X.
De Franceschi, S.
Brun-Barrière, B.
Sellier, H.
contents The Kondo effect emerges when a localized spin is screened by conduction electrons, giving rise to a strongly-correlated many-body ground state. In this work, we investigate this phenomenon in a GaAs/AlGaAs quantum dot, focusing on the spatial extension of the Kondo screening cloud in the electron reservoirs. To probe its properties, the dot is coupled to an electronic Fabry-Pérot interferometer, enabling controlled modulation of the density of states at the Fermi level. The observation of Kondo temperature oscillations indicates a Kondo screening length comparable to the cavity size. Furthermore, we explore how the coupling asymmetry with the two reservoirs affects both the amplitude and the phase of the conductance oscillations, revealing a subtle interplay between coherent transport and Kondo effect.
format Preprint
id arxiv_https___arxiv_org_abs_2511_07232
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Kondo cloud conductance in cavity-coupled quantum dots with asymmetric barriers
Fossion, D.
Champain, V.
Mohapatra, S.
Cavanna, A.
Gennser, U.
Mailly, D.
Hackens, B.
Jansen, L.
Jehl, X.
De Franceschi, S.
Brun-Barrière, B.
Sellier, H.
Strongly Correlated Electrons
The Kondo effect emerges when a localized spin is screened by conduction electrons, giving rise to a strongly-correlated many-body ground state. In this work, we investigate this phenomenon in a GaAs/AlGaAs quantum dot, focusing on the spatial extension of the Kondo screening cloud in the electron reservoirs. To probe its properties, the dot is coupled to an electronic Fabry-Pérot interferometer, enabling controlled modulation of the density of states at the Fermi level. The observation of Kondo temperature oscillations indicates a Kondo screening length comparable to the cavity size. Furthermore, we explore how the coupling asymmetry with the two reservoirs affects both the amplitude and the phase of the conductance oscillations, revealing a subtle interplay between coherent transport and Kondo effect.
title Kondo cloud conductance in cavity-coupled quantum dots with asymmetric barriers
topic Strongly Correlated Electrons
url https://arxiv.org/abs/2511.07232