Deterministic generation of entanglement in quantum networks by distributed coherent absorption
Deterministic generation of entanglement in quantum networks by distributed coherent absorption
We demonstrate that coherent absorption offers a robust and efficient way to generate quantum entanglement in multi-nodal quantum networks. Proof-of principle experiment in a bi-nodal network is reported.
Vetlugin, A.N
6a4487fd-42fc-4995-9cfa-8825fddc2e8e
Guo, Ruixiang
b18d02e1-04c3-42c4-830d-7a0c3d2cd33e
Soci, Cesare
6c86324e-2968-4e90-9436-4a92a4b26cec
Zheludev, Nikolai
32fb6af7-97e4-4d11-bca6-805745e40cc6
9 May 2021
Vetlugin, A.N
6a4487fd-42fc-4995-9cfa-8825fddc2e8e
Guo, Ruixiang
b18d02e1-04c3-42c4-830d-7a0c3d2cd33e
Soci, Cesare
6c86324e-2968-4e90-9436-4a92a4b26cec
Zheludev, Nikolai
32fb6af7-97e4-4d11-bca6-805745e40cc6
Vetlugin, A.N, Guo, Ruixiang, Soci, Cesare and Zheludev, Nikolai
(2021)
Deterministic generation of entanglement in quantum networks by distributed coherent absorption.
CLEO 2021 Virtual Conference, Virtual, United States.
09 - 14 May 2021.
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Conference or Workshop Item
(Paper)
Abstract
We demonstrate that coherent absorption offers a robust and efficient way to generate quantum entanglement in multi-nodal quantum networks. Proof-of principle experiment in a bi-nodal network is reported.
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Published date: 9 May 2021
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Publisher Copyright:
© 2021 OSA.
Venue - Dates:
CLEO 2021 Virtual Conference, Virtual, United States, 2021-05-09 - 2021-05-14
Identifiers
Local EPrints ID: 447151
URI: http://eprints.soton.ac.uk/id/eprint/447151
PURE UUID: b625c6ea-15ac-472d-a336-7296456fd351
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Date deposited: 04 Mar 2021 17:38
Last modified: 23 Feb 2024 02:33
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Contributors
Author:
A.N Vetlugin
Author:
Ruixiang Guo
Author:
Cesare Soci
Author:
Nikolai Zheludev
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