Gate-reflectometry dispersive readout and coherent control of a spin qubit in silicon

Gate-reflectometry is a recently demonstrated measurement technique for single spin states in silicon. It is potentially able to perform quantum non-demolition measurements and uses compact circuitry that can be scaled up to larger quantum computers. Crippa et al. successfully combine gate-reflectom...

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Autores principales: A. Crippa, R. Ezzouch, A. Aprá, A. Amisse, R. Laviéville, L. Hutin, B. Bertrand, M. Vinet, M. Urdampilleta, T. Meunier, M. Sanquer, X. Jehl, R. Maurand, S. De Franceschi
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/607f10ed51bd492c8a75a80e2d34fc23
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spelling oai:doaj.org-article:607f10ed51bd492c8a75a80e2d34fc232021-12-02T14:38:45ZGate-reflectometry dispersive readout and coherent control of a spin qubit in silicon10.1038/s41467-019-10848-z2041-1723https://doaj.org/article/607f10ed51bd492c8a75a80e2d34fc232019-07-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-10848-zhttps://doaj.org/toc/2041-1723Gate-reflectometry is a recently demonstrated measurement technique for single spin states in silicon. It is potentially able to perform quantum non-demolition measurements and uses compact circuitry that can be scaled up to larger quantum computers. Crippa et al. successfully combine gate-reflectometry qubit readout and coherent control.A. CrippaR. EzzouchA. ApráA. AmisseR. LaviévilleL. HutinB. BertrandM. VinetM. UrdampilletaT. MeunierM. SanquerX. JehlR. MaurandS. De FranceschiNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-6 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
A. Crippa
R. Ezzouch
A. Aprá
A. Amisse
R. Laviéville
L. Hutin
B. Bertrand
M. Vinet
M. Urdampilleta
T. Meunier
M. Sanquer
X. Jehl
R. Maurand
S. De Franceschi
Gate-reflectometry dispersive readout and coherent control of a spin qubit in silicon
description Gate-reflectometry is a recently demonstrated measurement technique for single spin states in silicon. It is potentially able to perform quantum non-demolition measurements and uses compact circuitry that can be scaled up to larger quantum computers. Crippa et al. successfully combine gate-reflectometry qubit readout and coherent control.
format article
author A. Crippa
R. Ezzouch
A. Aprá
A. Amisse
R. Laviéville
L. Hutin
B. Bertrand
M. Vinet
M. Urdampilleta
T. Meunier
M. Sanquer
X. Jehl
R. Maurand
S. De Franceschi
author_facet A. Crippa
R. Ezzouch
A. Aprá
A. Amisse
R. Laviéville
L. Hutin
B. Bertrand
M. Vinet
M. Urdampilleta
T. Meunier
M. Sanquer
X. Jehl
R. Maurand
S. De Franceschi
author_sort A. Crippa
title Gate-reflectometry dispersive readout and coherent control of a spin qubit in silicon
title_short Gate-reflectometry dispersive readout and coherent control of a spin qubit in silicon
title_full Gate-reflectometry dispersive readout and coherent control of a spin qubit in silicon
title_fullStr Gate-reflectometry dispersive readout and coherent control of a spin qubit in silicon
title_full_unstemmed Gate-reflectometry dispersive readout and coherent control of a spin qubit in silicon
title_sort gate-reflectometry dispersive readout and coherent control of a spin qubit in silicon
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/607f10ed51bd492c8a75a80e2d34fc23
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