Magnetic field compatible circuit quantum electrodynamics with graphene Josephson junctions

A transmon qubit insensitive to magnetic fields is a crucial element in topological quantum computing. Here, Kroll et al. create graphene transmons by integrating monolayer graphene Josephson junctions into microwave frequency superconducting circuits, allowing them to operate in a parallel magnetic...

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Autores principales: J. G. Kroll, W. Uilhoorn, K. L. van der Enden, D. de Jong, K. Watanabe, T. Taniguchi, S. Goswami, M. C. Cassidy, L. P. Kouwenhoven
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Lenguaje:EN
Publicado: Nature Portfolio 2018
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Acceso en línea:https://doaj.org/article/b57ce2d5da4c4627983b1e81c2c62239
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spelling oai:doaj.org-article:b57ce2d5da4c4627983b1e81c2c622392021-12-02T16:50:09ZMagnetic field compatible circuit quantum electrodynamics with graphene Josephson junctions10.1038/s41467-018-07124-x2041-1723https://doaj.org/article/b57ce2d5da4c4627983b1e81c2c622392018-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-07124-xhttps://doaj.org/toc/2041-1723A transmon qubit insensitive to magnetic fields is a crucial element in topological quantum computing. Here, Kroll et al. create graphene transmons by integrating monolayer graphene Josephson junctions into microwave frequency superconducting circuits, allowing them to operate in a parallel magnetic field of 1 T.J. G. KrollW. UilhoornK. L. van der EndenD. de JongK. WatanabeT. TaniguchiS. GoswamiM. C. CassidyL. P. KouwenhovenNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-5 (2018)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
J. G. Kroll
W. Uilhoorn
K. L. van der Enden
D. de Jong
K. Watanabe
T. Taniguchi
S. Goswami
M. C. Cassidy
L. P. Kouwenhoven
Magnetic field compatible circuit quantum electrodynamics with graphene Josephson junctions
description A transmon qubit insensitive to magnetic fields is a crucial element in topological quantum computing. Here, Kroll et al. create graphene transmons by integrating monolayer graphene Josephson junctions into microwave frequency superconducting circuits, allowing them to operate in a parallel magnetic field of 1 T.
format article
author J. G. Kroll
W. Uilhoorn
K. L. van der Enden
D. de Jong
K. Watanabe
T. Taniguchi
S. Goswami
M. C. Cassidy
L. P. Kouwenhoven
author_facet J. G. Kroll
W. Uilhoorn
K. L. van der Enden
D. de Jong
K. Watanabe
T. Taniguchi
S. Goswami
M. C. Cassidy
L. P. Kouwenhoven
author_sort J. G. Kroll
title Magnetic field compatible circuit quantum electrodynamics with graphene Josephson junctions
title_short Magnetic field compatible circuit quantum electrodynamics with graphene Josephson junctions
title_full Magnetic field compatible circuit quantum electrodynamics with graphene Josephson junctions
title_fullStr Magnetic field compatible circuit quantum electrodynamics with graphene Josephson junctions
title_full_unstemmed Magnetic field compatible circuit quantum electrodynamics with graphene Josephson junctions
title_sort magnetic field compatible circuit quantum electrodynamics with graphene josephson junctions
publisher Nature Portfolio
publishDate 2018
url https://doaj.org/article/b57ce2d5da4c4627983b1e81c2c62239
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AT ddejong magneticfieldcompatiblecircuitquantumelectrodynamicswithgraphenejosephsonjunctions
AT kwatanabe magneticfieldcompatiblecircuitquantumelectrodynamicswithgraphenejosephsonjunctions
AT ttaniguchi magneticfieldcompatiblecircuitquantumelectrodynamicswithgraphenejosephsonjunctions
AT sgoswami magneticfieldcompatiblecircuitquantumelectrodynamicswithgraphenejosephsonjunctions
AT mccassidy magneticfieldcompatiblecircuitquantumelectrodynamicswithgraphenejosephsonjunctions
AT lpkouwenhoven magneticfieldcompatiblecircuitquantumelectrodynamicswithgraphenejosephsonjunctions
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