Sound-driven single-electron transfer in a circuit of coupled quantum rails

Surface acoustic waves are promising candidates to convey flying qubits through semiconductor circuits. The authors investigate the central building block of such a circuit in an experiment and present a route to realise quantum logic gates with flying electrons that are surfing on a sound-wave.

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Autores principales: Shintaro Takada, Hermann Edlbauer, Hugo V. Lepage, Junliang Wang, Pierre-André Mortemousque, Giorgos Georgiou, Crispin H. W. Barnes, Christopher J. B. Ford, Mingyun Yuan, Paulo V. Santos, Xavier Waintal, Arne Ludwig, Andreas D. Wieck, Matias Urdampilleta, Tristan Meunier, Christopher Bäuerle
Formato: article
Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/c2d161ffd3594673a429ab737b18dbf8
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spelling oai:doaj.org-article:c2d161ffd3594673a429ab737b18dbf82021-12-02T14:35:49ZSound-driven single-electron transfer in a circuit of coupled quantum rails10.1038/s41467-019-12514-w2041-1723https://doaj.org/article/c2d161ffd3594673a429ab737b18dbf82019-10-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-12514-whttps://doaj.org/toc/2041-1723Surface acoustic waves are promising candidates to convey flying qubits through semiconductor circuits. The authors investigate the central building block of such a circuit in an experiment and present a route to realise quantum logic gates with flying electrons that are surfing on a sound-wave.Shintaro TakadaHermann EdlbauerHugo V. LepageJunliang WangPierre-André MortemousqueGiorgos GeorgiouCrispin H. W. BarnesChristopher J. B. FordMingyun YuanPaulo V. SantosXavier WaintalArne LudwigAndreas D. WieckMatias UrdampilletaTristan MeunierChristopher BäuerleNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-9 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Shintaro Takada
Hermann Edlbauer
Hugo V. Lepage
Junliang Wang
Pierre-André Mortemousque
Giorgos Georgiou
Crispin H. W. Barnes
Christopher J. B. Ford
Mingyun Yuan
Paulo V. Santos
Xavier Waintal
Arne Ludwig
Andreas D. Wieck
Matias Urdampilleta
Tristan Meunier
Christopher Bäuerle
Sound-driven single-electron transfer in a circuit of coupled quantum rails
description Surface acoustic waves are promising candidates to convey flying qubits through semiconductor circuits. The authors investigate the central building block of such a circuit in an experiment and present a route to realise quantum logic gates with flying electrons that are surfing on a sound-wave.
format article
author Shintaro Takada
Hermann Edlbauer
Hugo V. Lepage
Junliang Wang
Pierre-André Mortemousque
Giorgos Georgiou
Crispin H. W. Barnes
Christopher J. B. Ford
Mingyun Yuan
Paulo V. Santos
Xavier Waintal
Arne Ludwig
Andreas D. Wieck
Matias Urdampilleta
Tristan Meunier
Christopher Bäuerle
author_facet Shintaro Takada
Hermann Edlbauer
Hugo V. Lepage
Junliang Wang
Pierre-André Mortemousque
Giorgos Georgiou
Crispin H. W. Barnes
Christopher J. B. Ford
Mingyun Yuan
Paulo V. Santos
Xavier Waintal
Arne Ludwig
Andreas D. Wieck
Matias Urdampilleta
Tristan Meunier
Christopher Bäuerle
author_sort Shintaro Takada
title Sound-driven single-electron transfer in a circuit of coupled quantum rails
title_short Sound-driven single-electron transfer in a circuit of coupled quantum rails
title_full Sound-driven single-electron transfer in a circuit of coupled quantum rails
title_fullStr Sound-driven single-electron transfer in a circuit of coupled quantum rails
title_full_unstemmed Sound-driven single-electron transfer in a circuit of coupled quantum rails
title_sort sound-driven single-electron transfer in a circuit of coupled quantum rails
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/c2d161ffd3594673a429ab737b18dbf8
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