Applications of single-photon technologies. (Q84278)
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Project Q84278 in Poland
Language | Label | Description | Also known as |
---|---|---|---|
English | Applications of single-photon technologies. |
Project Q84278 in Poland |
Statements
3,095,525.0 zloty
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3,095,525.0 zloty
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100.0 percent
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1 September 2017
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31 August 2020
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UNIWERSYTET MIKOŁAJA KOPERNIKA W TORUNIU
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The aim of the project is the improvement of a selection of quantum technologies by developing single photon sources and their characterization techniques. There are three main goals: extending the range of quantum communication protocols, the observation of two photon absorption effect with a correlated photon pair and nonclasical quantum two photon interference using a nanostructure. (Polish)
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The aim of the project is the improvement of a selection of quantum technologies by developing single photon sources and their characterisation techniques. There are three main goals: extending the range of quantum communication protocols, the observation of two photon absorption effect with a correlated photon pair and nonclasical quantum two photon interference using a nanostructure. (English)
14 October 2020
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L’objectif du projet est d’améliorer une sélection de technologies quantiques en développant des sources de photons uniques et leurs techniques de caractérisation. Il y a trois objectifs principaux: L’extension de la gamme des protocoles de communication quantique, l’observation de deux effets d’absorption de photons avec une paire de photons corrélée et l’interférence quantique de deux photons non clasique à l’aide d’une nanostructure. (French)
30 November 2021
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Ziel des Projekts ist die Verbesserung einer Auswahl von Quantentechnologien durch die Entwicklung einzelner Photonenquellen und deren Charakterisierungstechniken. Es gibt drei Hauptziele: Erweiterung des Bereichs der Quantenkommunikationsprotokolle, die Beobachtung von zwei Photonen-Absorptionseffekten mit einem korrelierten Photonenpaar und nicht-klavischer Quanten-zwei Photonen-Interferenz mittels einer Nanostruktur. (German)
7 December 2021
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Identifiers
POIR.04.04.00-00-3FD9/17
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