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Magneto-Thermoelectric Transport in Graphene Quantum Dot with Strong Correlations

Published 16 Jan 2024 in cond-mat.mes-hall and cond-mat.str-el | (2401.08050v1)

Abstract: Disorder at the etched edges of graphene quantum dots (GQD) enables random all-to-all interactions between localized charges in partially-filled Landau levels, providing a potential platform to realize the Sachdev-Ye-Kitaev (SYK) model. We use quantum Hall edge states in the graphene electrodes to measure electrical conductance and thermoelectric power across the GQD. We observe a rapid diminishing of electric conductance fluctuations and slowly decreasing thermoelectric power across the GQD with increasing temperature, consistent with recent theoretical predictions for the SYK regime.

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