Details
Originalsprache | Englisch |
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Titel des Sammelwerks | Integrated Photonics Research Silicon and Nanophotonics, IPRSN 2020 |
Herausgeber (Verlag) | OSA - The Optical Society |
ISBN (elektronisch) | 9781557528209 |
ISBN (Print) | 9781943580798 |
Publikationsstatus | Veröffentlicht - 2020 |
Veranstaltung | Integrated Photonics Research Silicon and Nanophotonics, IPRSN 2020 - Washington, USA / Vereinigte Staaten Dauer: 13 Juli 2020 → 16 Juli 2020 |
Publikationsreihe
Name | OSA Technical Digest |
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Band | IW1A.2 |
Abstract
We demonstrate the first multipartite d-level cluster state by using two-photon hyper-entanglement in time and frequency, and validate its genuine entanglement via a novel witness operator enabling feasible detection of any complex quantum state.
ASJC Scopus Sachgebiete
- Werkstoffwissenschaften (insg.)
- Elektronische, optische und magnetische Materialien
- Ingenieurwesen (insg.)
- Werkstoffmechanik
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Integrated Photonics Research Silicon and Nanophotonics, IPRSN 2020. OSA - The Optical Society, 2020. (OSA Technical Digest; Band IW1A.2).
Publikation: Beitrag in Buch/Bericht/Sammelwerk/Konferenzband › Aufsatz in Konferenzband › Forschung › Peer-Review
}
TY - GEN
T1 - Multipartite d-level two-photon cluster states and their entanglement detection via feasible witness operators
AU - Sciara, Stefania
AU - Reimer, Christian
AU - Roztocki, Piotr
AU - Moss, David J.
AU - Caspani, Lucia
AU - Munro, William J.
AU - Kues, Michael
AU - Morandotti, Roberto
N1 - Publisher Copyright: © 2020 The Author(s) Copyright: Copyright 2020 Elsevier B.V., All rights reserved.
PY - 2020
Y1 - 2020
N2 - We demonstrate the first multipartite d-level cluster state by using two-photon hyper-entanglement in time and frequency, and validate its genuine entanglement via a novel witness operator enabling feasible detection of any complex quantum state.
AB - We demonstrate the first multipartite d-level cluster state by using two-photon hyper-entanglement in time and frequency, and validate its genuine entanglement via a novel witness operator enabling feasible detection of any complex quantum state.
UR - http://www.scopus.com/inward/record.url?scp=85095456147&partnerID=8YFLogxK
U2 - 10.1364/IPRSN.2020.IW1A.5
DO - 10.1364/IPRSN.2020.IW1A.5
M3 - Conference contribution
SN - 9781943580798
T3 - OSA Technical Digest
BT - Integrated Photonics Research Silicon and Nanophotonics, IPRSN 2020
PB - OSA - The Optical Society
T2 - Integrated Photonics Research Silicon and Nanophotonics, IPRSN 2020
Y2 - 13 July 2020 through 16 July 2020
ER -