ReportGem ReportGem

Academic paper

Entropic signatures of the single-impurity Kondo state

Authors: Johann Drayne, Silvia L\"{u}scher, Will Grant, Vahid Movahed, Tim Child, Saeed Fallahi, Geoffrey C. Gardner, Michael J. Manfra, Yaakov Kleeorin, Yigal Meir, Joshua FolkPublished: 2026-07-29Paper ID: 2607.27502Category: cond-mat.mes-hallLicense: CC BY 4.0

Abstract

The Kondo singlet---a many-body state formed by entanglement between a localized spin and the Fermi sea---has been studied extensively through its transport signatures in quantum dots. Here we report a thermodynamic measurement of the entropy suppression associated with the formation of the Kondo singlet, using temperature-dependent charge sensing and a Maxwell relation to track the suppression of spin entropy as the first electron is added to a strongly-coupled GaAs quantum dot. Plotting $dN/dT$ against the simultaneously measured occupation $N$ reveals an asymmetric lineshape with its peak shifted to $N>1/2$---a hallmark of Kondo screening---that weakens with increasing temperature and is qualitatively reproduced by numerical renormalization group (NRG) calculations, with a small but persistent offset to lower occupation relative to the theory. An independent measurement of conductance versus occupation on the same device provides a test of these quantities through the mixed-valence crossover and matches NRG within experimental uncertainty.

This public page contains bibliographic metadata and the author abstract. Use the reader for licensed document access.

Open licensed paper reader