Extended spin coherence of the zinc-vacancy centers in ZnSe with fast optical access

Ideal qubits should exhibit, simultaneously, long spin coherence times and fast initialization. Here, defect centers in ZnSe epilayers, introduced by ex-situ fluorine implantation, are displaying spin coherence times of 100 ns at room temperature and fast optical access on the picosecond timescale....

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Autores principales: Erik Kirstein, Evgeny A. Zhukov, Dmitry S. Smirnov, Vitalie Nedelea, Phillip Greve, Ina V. Kalitukha, Viktor F. Sapega, Alexander Pawlis, Dmitri R. Yakovlev, Manfred Bayer, Alex Greilich
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/2c5a60f2d5e941fbb3245e0f07c5514d
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spelling oai:doaj.org-article:2c5a60f2d5e941fbb3245e0f07c5514d2021-12-02T14:58:45ZExtended spin coherence of the zinc-vacancy centers in ZnSe with fast optical access10.1038/s43246-021-00198-z2662-4443https://doaj.org/article/2c5a60f2d5e941fbb3245e0f07c5514d2021-09-01T00:00:00Zhttps://doi.org/10.1038/s43246-021-00198-zhttps://doaj.org/toc/2662-4443Ideal qubits should exhibit, simultaneously, long spin coherence times and fast initialization. Here, defect centers in ZnSe epilayers, introduced by ex-situ fluorine implantation, are displaying spin coherence times of 100 ns at room temperature and fast optical access on the picosecond timescale.Erik KirsteinEvgeny A. ZhukovDmitry S. SmirnovVitalie NedeleaPhillip GreveIna V. KalitukhaViktor F. SapegaAlexander PawlisDmitri R. YakovlevManfred BayerAlex GreilichNature PortfolioarticleMaterials of engineering and construction. Mechanics of materialsTA401-492ENCommunications Materials, Vol 2, Iss 1, Pp 1-8 (2021)
institution DOAJ
collection DOAJ
language EN
topic Materials of engineering and construction. Mechanics of materials
TA401-492
spellingShingle Materials of engineering and construction. Mechanics of materials
TA401-492
Erik Kirstein
Evgeny A. Zhukov
Dmitry S. Smirnov
Vitalie Nedelea
Phillip Greve
Ina V. Kalitukha
Viktor F. Sapega
Alexander Pawlis
Dmitri R. Yakovlev
Manfred Bayer
Alex Greilich
Extended spin coherence of the zinc-vacancy centers in ZnSe with fast optical access
description Ideal qubits should exhibit, simultaneously, long spin coherence times and fast initialization. Here, defect centers in ZnSe epilayers, introduced by ex-situ fluorine implantation, are displaying spin coherence times of 100 ns at room temperature and fast optical access on the picosecond timescale.
format article
author Erik Kirstein
Evgeny A. Zhukov
Dmitry S. Smirnov
Vitalie Nedelea
Phillip Greve
Ina V. Kalitukha
Viktor F. Sapega
Alexander Pawlis
Dmitri R. Yakovlev
Manfred Bayer
Alex Greilich
author_facet Erik Kirstein
Evgeny A. Zhukov
Dmitry S. Smirnov
Vitalie Nedelea
Phillip Greve
Ina V. Kalitukha
Viktor F. Sapega
Alexander Pawlis
Dmitri R. Yakovlev
Manfred Bayer
Alex Greilich
author_sort Erik Kirstein
title Extended spin coherence of the zinc-vacancy centers in ZnSe with fast optical access
title_short Extended spin coherence of the zinc-vacancy centers in ZnSe with fast optical access
title_full Extended spin coherence of the zinc-vacancy centers in ZnSe with fast optical access
title_fullStr Extended spin coherence of the zinc-vacancy centers in ZnSe with fast optical access
title_full_unstemmed Extended spin coherence of the zinc-vacancy centers in ZnSe with fast optical access
title_sort extended spin coherence of the zinc-vacancy centers in znse with fast optical access
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/2c5a60f2d5e941fbb3245e0f07c5514d
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