Edward Eaton

According to our database1, Edward Eaton authored at least 15 papers between 2015 and 2025.

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Bibliography

2025
Quantum-Safe Public Key Blinding from MPC-in-the-Head Signature Schemes.
Proceedings of the Applied Cryptography and Network Security, 2025

2024
Provably Secure Butterfly Key Expansion from the CRYSTALS Post-Quantum Schemes.
IACR Cryptol. ePrint Arch., 2024

2023
Security Analysis of Signature Schemes with Key Blinding.
IACR Cryptol. ePrint Arch., 2023

Making an Asymmetric PAKE Quantum-Annoying by Hiding Group Elements.
Proceedings of the Computer Security - ESORICS 2023, 2023

2022
Improving the Privacy of Tor Onion Services.
Proceedings of the Applied Cryptography and Network Security, 2022

2021
Towards Post-Quantum Key-Updatable Public-Key Encryption via Supersingular Isogenies.
Proceedings of the Selected Areas in Cryptography - 28th International Conference, 2021

The "Quantum Annoying" Property of Password-Authenticated Key Exchange Protocols.
Proceedings of the Post-Quantum Cryptography - 12th International Workshop, 2021

Post-quantum Key-Blinding for Authentication in Anonymity Networks.
Proceedings of the Progress in Cryptology - LATINCRYPT 2021, 2021

2020
Towards Post-Quantum Updatable Public-Key Encryption via Supersingular Isogenies.
IACR Cryptol. ePrint Arch., 2020

A Note on the Instantiability of the Quantum Random Oracle.
Proceedings of the Post-Quantum Cryptography - 11th International Conference, 2020

2018
QC-MDPC: A Timing Attack and a CCA2 KEM.
Proceedings of the Post-Quantum Cryptography - 9th International Conference, 2018

Quantum Collision-Finding in Non-uniform Random Functions.
Proceedings of the Post-Quantum Cryptography - 9th International Conference, 2018

2017
Leighton-Micali Hash-Based Signatures in the Quantum Random-Oracle Model.
Proceedings of the Selected Areas in Cryptography - SAC 2017, 2017

Revisiting TESLA in the Quantum Random Oracle Model.
Proceedings of the Post-Quantum Cryptography - 8th International Workshop, 2017

2015
Making Existential-unforgeable Signatures Strongly Unforgeable in the Quantum Random-oracle Model.
Proceedings of the 10th Conference on the Theory of Quantum Computation, 2015


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