Interplay of Pauli blockade with electron-photon coupling in quantum dots

Fuente: arXiv
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Hauptverfasser: Ginzel, Florian, Burkard, Guido
Format: Preprint
Veröffentlicht: 2022
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author Ginzel, Florian
Burkard, Guido
author_facet Ginzel, Florian
Burkard, Guido
contents Both quantum transport measurements in the Pauli blockade regime and microwave cavity transmission measurements are important tools for spin-qubit readout and characterization. Based on a generalized input-output theory we derive a theoretical framework to investigate how a double quantum dot (DQD) in a transport setup interacts with a coupled microwave resonator while the current through the DQD is rectified by Pauli blockade. We show that the output field of the resonator can be used to infer the leakage current and thus obtain insight into the blockade mechanisms. In the case of a silicon DQD, we show how the valley quasi-degeneracy can impose limitations on this scheme. We also demonstrate that a large number of unknown DQD parameters including (but not limited to) the valley splitting can be estimated from the resonator response simultaneous to a transport experiment, providing more detailed knowledge about the microscopic environment of the DQD. Furthermore, we describe and quantify a back-action of the resonator photons on the steady state leakage current.
format Preprint
id arxiv_https___arxiv_org_abs_2210_02982
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Interplay of Pauli blockade with electron-photon coupling in quantum dots
Ginzel, Florian
Burkard, Guido
Mesoscale and Nanoscale Physics
Both quantum transport measurements in the Pauli blockade regime and microwave cavity transmission measurements are important tools for spin-qubit readout and characterization. Based on a generalized input-output theory we derive a theoretical framework to investigate how a double quantum dot (DQD) in a transport setup interacts with a coupled microwave resonator while the current through the DQD is rectified by Pauli blockade. We show that the output field of the resonator can be used to infer the leakage current and thus obtain insight into the blockade mechanisms. In the case of a silicon DQD, we show how the valley quasi-degeneracy can impose limitations on this scheme. We also demonstrate that a large number of unknown DQD parameters including (but not limited to) the valley splitting can be estimated from the resonator response simultaneous to a transport experiment, providing more detailed knowledge about the microscopic environment of the DQD. Furthermore, we describe and quantify a back-action of the resonator photons on the steady state leakage current.
title Interplay of Pauli blockade with electron-photon coupling in quantum dots
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2210.02982