Stabilization of point-defect spin qubits by quantum wells

Certain point defects in crystals can be used as optically addressable quantum bits, much like atoms trapped in vacuum. Ivády et al. show that embedding such artificial atoms in stacking faults can actually improve their optical properties, making them function even more like true atoms.

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Autores principales: Viktor Ivády, Joel Davidsson, Nazar Delegan, Abram L. Falk, Paul V. Klimov, Samuel J. Whiteley, Stephan O. Hruszkewycz, Martin V. Holt, F. Joseph Heremans, Nguyen Tien Son, David D. Awschalom, Igor A. Abrikosov, Adam Gali
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Lenguaje:EN
Publicado: Nature Portfolio 2019
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Acceso en línea:https://doaj.org/article/eb4c5ecc28844a8487d34d51ff312981
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spelling oai:doaj.org-article:eb4c5ecc28844a8487d34d51ff3129812021-12-02T14:39:56ZStabilization of point-defect spin qubits by quantum wells10.1038/s41467-019-13495-62041-1723https://doaj.org/article/eb4c5ecc28844a8487d34d51ff3129812019-12-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-13495-6https://doaj.org/toc/2041-1723Certain point defects in crystals can be used as optically addressable quantum bits, much like atoms trapped in vacuum. Ivády et al. show that embedding such artificial atoms in stacking faults can actually improve their optical properties, making them function even more like true atoms.Viktor IvádyJoel DavidssonNazar DeleganAbram L. FalkPaul V. KlimovSamuel J. WhiteleyStephan O. HruszkewyczMartin V. HoltF. Joseph HeremansNguyen Tien SonDavid D. AwschalomIgor A. AbrikosovAdam GaliNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-8 (2019)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Viktor Ivády
Joel Davidsson
Nazar Delegan
Abram L. Falk
Paul V. Klimov
Samuel J. Whiteley
Stephan O. Hruszkewycz
Martin V. Holt
F. Joseph Heremans
Nguyen Tien Son
David D. Awschalom
Igor A. Abrikosov
Adam Gali
Stabilization of point-defect spin qubits by quantum wells
description Certain point defects in crystals can be used as optically addressable quantum bits, much like atoms trapped in vacuum. Ivády et al. show that embedding such artificial atoms in stacking faults can actually improve their optical properties, making them function even more like true atoms.
format article
author Viktor Ivády
Joel Davidsson
Nazar Delegan
Abram L. Falk
Paul V. Klimov
Samuel J. Whiteley
Stephan O. Hruszkewycz
Martin V. Holt
F. Joseph Heremans
Nguyen Tien Son
David D. Awschalom
Igor A. Abrikosov
Adam Gali
author_facet Viktor Ivády
Joel Davidsson
Nazar Delegan
Abram L. Falk
Paul V. Klimov
Samuel J. Whiteley
Stephan O. Hruszkewycz
Martin V. Holt
F. Joseph Heremans
Nguyen Tien Son
David D. Awschalom
Igor A. Abrikosov
Adam Gali
author_sort Viktor Ivády
title Stabilization of point-defect spin qubits by quantum wells
title_short Stabilization of point-defect spin qubits by quantum wells
title_full Stabilization of point-defect spin qubits by quantum wells
title_fullStr Stabilization of point-defect spin qubits by quantum wells
title_full_unstemmed Stabilization of point-defect spin qubits by quantum wells
title_sort stabilization of point-defect spin qubits by quantum wells
publisher Nature Portfolio
publishDate 2019
url https://doaj.org/article/eb4c5ecc28844a8487d34d51ff312981
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AT joeldavidsson stabilizationofpointdefectspinqubitsbyquantumwells
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AT stephanohruszkewycz stabilizationofpointdefectspinqubitsbyquantumwells
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AT igoraabrikosov stabilizationofpointdefectspinqubitsbyquantumwells
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