Quantum dot admittance probed at microwave frequencies with an on-chip resonator

We present microwave frequency measurements of the dynamic admittance of a quantum dot tunnel-coupled to a two-dimensional electron gas. The measurements are made via a high-quality 6.75 GHz on-chip resonator capacitively coupled to the dot. The resonator frequency is found to shift both down and up...

Szczegółowa specyfikacja

Opis bibliograficzny
Główni autorzy: Frey, T, Leek, P, Beck, M, Faist, J, Wallraff, A, Ensslin, K, Ihn, T, Buettiker, M
Format: Journal article
Język:English
Wydane: 2012
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author Frey, T
Leek, P
Beck, M
Faist, J
Wallraff, A
Ensslin, K
Ihn, T
Buettiker, M
author_facet Frey, T
Leek, P
Beck, M
Faist, J
Wallraff, A
Ensslin, K
Ihn, T
Buettiker, M
author_sort Frey, T
collection OXFORD
description We present microwave frequency measurements of the dynamic admittance of a quantum dot tunnel-coupled to a two-dimensional electron gas. The measurements are made via a high-quality 6.75 GHz on-chip resonator capacitively coupled to the dot. The resonator frequency is found to shift both down and up close to conductance resonance of the dot corresponding to a change of sign of the reactance of the system from capacitive to inductive. The observations are consistent with a scattering matrix model. The sign of the reactance depends on the detuning of the dot from conductance resonance and on the magnitude of the tunnel rate to the lead with respect to the resonator frequency. Inductive response is observed on a conductance resonance when tunnel coupling and temperature are sufficiently small compared to the resonator frequency. © 2012 American Physical Society.
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spelling oxford-uuid:dec1617f-c6e7-46ee-bb77-52f99f7baf352022-03-27T09:34:30ZQuantum dot admittance probed at microwave frequencies with an on-chip resonatorJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:dec1617f-c6e7-46ee-bb77-52f99f7baf35EnglishSymplectic Elements at Oxford2012Frey, TLeek, PBeck, MFaist, JWallraff, AEnsslin, KIhn, TBuettiker, MWe present microwave frequency measurements of the dynamic admittance of a quantum dot tunnel-coupled to a two-dimensional electron gas. The measurements are made via a high-quality 6.75 GHz on-chip resonator capacitively coupled to the dot. The resonator frequency is found to shift both down and up close to conductance resonance of the dot corresponding to a change of sign of the reactance of the system from capacitive to inductive. The observations are consistent with a scattering matrix model. The sign of the reactance depends on the detuning of the dot from conductance resonance and on the magnitude of the tunnel rate to the lead with respect to the resonator frequency. Inductive response is observed on a conductance resonance when tunnel coupling and temperature are sufficiently small compared to the resonator frequency. © 2012 American Physical Society.
spellingShingle Frey, T
Leek, P
Beck, M
Faist, J
Wallraff, A
Ensslin, K
Ihn, T
Buettiker, M
Quantum dot admittance probed at microwave frequencies with an on-chip resonator
title Quantum dot admittance probed at microwave frequencies with an on-chip resonator
title_full Quantum dot admittance probed at microwave frequencies with an on-chip resonator
title_fullStr Quantum dot admittance probed at microwave frequencies with an on-chip resonator
title_full_unstemmed Quantum dot admittance probed at microwave frequencies with an on-chip resonator
title_short Quantum dot admittance probed at microwave frequencies with an on-chip resonator
title_sort quantum dot admittance probed at microwave frequencies with an on chip resonator
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