Information-theoretically secure data origin authentication with quantum and classical resources
November 13, 2020 Β· Declared Dead Β· π Cryptogr.
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Authors
Georgios M. Nikolopoulos, Marc Fischlin
arXiv ID
2011.06849
Category
quant-ph: Quantum Computing
Cross-listed
cs.CR
Citations
7
Venue
Cryptogr.
Last Checked
4 months ago
Abstract
In conventional cryptography, information-theoretically secure message authentication can be achieved by means of universal hash functions, and requires that the two legitimate users share a random secret key, which is twice as long as the message. We address the question as of whether quantum resources can offer any advantage over classical unconditionally secure message authentication codes. It is shown that passive prepare-and-measure quantum message-authentication schemes cannot do better than their classical counterparts. Subsequently we present an interactive entanglement-assisted scheme, which ideally allows for the authentication of classical messages with a classical key, which is as long as the message.
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