Flux-Tunable Hybridization in a Double Quantum Dot Interferometer

Fuente: arXiv
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Bibliographic Details
Main Authors: Prosko, Christian G., Kulesh, Ivan, Chan, Michael, Han, Lin, Xiao, Di, Thomas, Candice, Manfra, Michael J., Goswami, Srijit, Malinowski, Filip K.
Format: Preprint
Published: 2023
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author Prosko, Christian G.
Kulesh, Ivan
Chan, Michael
Han, Lin
Xiao, Di
Thomas, Candice
Manfra, Michael J.
Goswami, Srijit
Malinowski, Filip K.
author_facet Prosko, Christian G.
Kulesh, Ivan
Chan, Michael
Han, Lin
Xiao, Di
Thomas, Candice
Manfra, Michael J.
Goswami, Srijit
Malinowski, Filip K.
contents A single electron shared between two levels threaded by a magnetic flux is an irreducibly simple quantum system in which interference is predicted to occur. We demonstrate tuning of the tunnel coupling between two such electronic levels with flux, implemented in a loop comprising two quantum dots. Using radio-frequency reflectometry of the dots' gate electrodes we extract the inter-dot coupling, which exhibits oscillations with a periodicity of one flux quantum. In different tunneling regimes we benchmark the oscillations' contrast, and find that their amplitude varies with the levels involved, while tunneling is generically not suppressed at oscillation minima. These results establish the feasibility and limitations of parity readout of qubits with tunnel couplings tuned by flux.
format Preprint
id arxiv_https___arxiv_org_abs_2303_04144
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Flux-Tunable Hybridization in a Double Quantum Dot Interferometer
Prosko, Christian G.
Kulesh, Ivan
Chan, Michael
Han, Lin
Xiao, Di
Thomas, Candice
Manfra, Michael J.
Goswami, Srijit
Malinowski, Filip K.
Mesoscale and Nanoscale Physics
Quantum Physics
A single electron shared between two levels threaded by a magnetic flux is an irreducibly simple quantum system in which interference is predicted to occur. We demonstrate tuning of the tunnel coupling between two such electronic levels with flux, implemented in a loop comprising two quantum dots. Using radio-frequency reflectometry of the dots' gate electrodes we extract the inter-dot coupling, which exhibits oscillations with a periodicity of one flux quantum. In different tunneling regimes we benchmark the oscillations' contrast, and find that their amplitude varies with the levels involved, while tunneling is generically not suppressed at oscillation minima. These results establish the feasibility and limitations of parity readout of qubits with tunnel couplings tuned by flux.
title Flux-Tunable Hybridization in a Double Quantum Dot Interferometer
topic Mesoscale and Nanoscale Physics
Quantum Physics
url https://arxiv.org/abs/2303.04144