Unconditionally secure digital signatures implemented in an 8-user quantum network
February 09, 2022 Β· Declared Dead Β· π New Journal of Physics
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Authors
Yoann Pelet, Ittoop Vergheese Puthoor, Natarajan Venkatachalam, SΓΆren Wengerowsky, Martin LonΔariΔ, Sebastian Philipp Neumann, Bo Liu, Ε½eljko Samec, Mario StipΔeviΔ, Rupert Ursin, Erika Andersson, John G. Rarity, Djeylan Aktas, Siddarth Koduru Joshi
arXiv ID
2202.04641
Category
quant-ph: Quantum Computing
Cross-listed
cs.CR
Citations
18
Venue
New Journal of Physics
Last Checked
5 months ago
Abstract
The ability to know and verifiably demonstrate the origins of messages can often be as important as encrypting the message itself. Here we present an experimental demonstration of an unconditionally secure digital signature (USS) protocol implemented for the first time, to the best of our knowledge, on a fully connected quantum network without trusted nodes. Our USS protocol is secure against forging, repudiation and messages are transferrable. We show the feasibility of unconditionally secure signatures using only bi-partite entangled states distributed throughout the network and experimentally evaluate the performance of the protocol in real world scenarios with varying message lengths.
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