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  4. Experimental anonymous conference key agreement using linear cluster states
 
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September 28, 2023
Journal Article
Title

Experimental anonymous conference key agreement using linear cluster states

Abstract
Multipartite entanglement enables secure and anonymous key exchange between multiple parties in a network. Greenberger-Horne-Zeilinger states have been introduced as resource states for anonymous key exchange protocols, in which an anonymous subset of parties within a larger network establishes a secret key. However, the use of other types of multipartite entanglement for such protocols remains relatively unexplored. Here, we demonstrate that linear cluster states can serve as a versatile and potentially scalable resource in such applications. We implemented an anonymous key exchange protocol with four photons in a linear cluster state and established a shared key between three parties in our network. We show how to optimize the protocol parameters to account for noise and to maximize the finite key rate under realistic conditions. As cluster states have been established as a flexible resource in quantum computation, we expect that our demonstration provides a first step towards their hybrid use for networked computing and communication.
Author(s)
Rückle, Lukas
Budde, Jakob
Jong, Jarn de
Technische Universität Berlin  
Hahn, Frederik
Pappa, Anna
Technische Universität Berlin  
Barz, Stefanie
Journal
Physical review research  
Open Access
DOI
10.1103/PhysRevResearch.5.033222
Additional link
Full text
Language
English
Fraunhofer-Institut für Offene Kommunikationssysteme FOKUS  
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