Eve's forgery probability from her false acceptance probability: interactive authentication, Holevo information and the min-entropy

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1. Verfasser: Rigas, Pete
Format: Preprint
Veröffentlicht: 2026
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_version_ 1866908870708822016
author Rigas, Pete
author_facet Rigas, Pete
contents We obtain estimates for Eve's forgery probability, namely the probability that she is able to forge a message which Alice or Bob mistakenly accept over a noisy Quantum channel for generating a shared Quantum secret key. This probability is related to Eve's success probability obtained in a previous work due to Renner and Wolf, which was obtained from assumptions on the min-entropy for characterizing asymmetric security. To demonstrate that protocols over noisy Quantum channels are dependent upon a single, unified security threshold in comparison to multiple security parameters in the Renner-Wolf interactive authentication protocol framework we upper bound Eve's forgery probability with a Holevo-type quantity that can be made negligibly small. By leveraging estimates for Eve's false acceptance probability that have previously been obtained by the author, we obtain the desired security threshold by bounding the false acceptance probability with a suitably chosen two-universal function which serves as a counterpart to two-universal hashing functions that have previously been examined for cryptographic protocols in Quantum key distribution. As a result the protocol is not only $ε$-secure, for some $ε>0$, but also composable against forgery and key leakage.
format Preprint
id arxiv_https___arxiv_org_abs_2603_06645
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Eve's forgery probability from her false acceptance probability: interactive authentication, Holevo information and the min-entropy
Rigas, Pete
Quantum Physics
Probability
81P02, 81Q02
We obtain estimates for Eve's forgery probability, namely the probability that she is able to forge a message which Alice or Bob mistakenly accept over a noisy Quantum channel for generating a shared Quantum secret key. This probability is related to Eve's success probability obtained in a previous work due to Renner and Wolf, which was obtained from assumptions on the min-entropy for characterizing asymmetric security. To demonstrate that protocols over noisy Quantum channels are dependent upon a single, unified security threshold in comparison to multiple security parameters in the Renner-Wolf interactive authentication protocol framework we upper bound Eve's forgery probability with a Holevo-type quantity that can be made negligibly small. By leveraging estimates for Eve's false acceptance probability that have previously been obtained by the author, we obtain the desired security threshold by bounding the false acceptance probability with a suitably chosen two-universal function which serves as a counterpart to two-universal hashing functions that have previously been examined for cryptographic protocols in Quantum key distribution. As a result the protocol is not only $ε$-secure, for some $ε>0$, but also composable against forgery and key leakage.
title Eve's forgery probability from her false acceptance probability: interactive authentication, Holevo information and the min-entropy
topic Quantum Physics
Probability
81P02, 81Q02
url https://arxiv.org/abs/2603.06645