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Single-Message Credential-Hiding Login.
About: This article is published in IACR Cryptology ePrint Archive. The article was published on 01 Jan 2020. and is currently open access. The article focuses on the topics: Login & Credential.
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Citations
BRAKE: Biometric Resilient Authenticated Key Exchange
Pia Bauspieß,Tjerand Silde,Matej Poljuha,Alexandre Tullot,Anamaria Costache,Christian Rathgeb,Jascha Kolberg,Christoph Busch +7 more
References
Identity-Based Encryption from the Weil Pairing
Dan Boneh,Matthew K. Franklin +1 more
- 19 Aug 2001
TL;DR: This work proposes a fully functional identity-based encryption scheme (IBE) based on the Weil pairing that has chosen ciphertext security in the random oracle model assuming an elliptic curve variant of the computational Diffie-Hellman problem.
Universally composable security: a new paradigm for cryptographic protocols
Ran Canetti
- 14 Oct 2001
TL;DR: The notion of universally composable security was introduced in this paper for defining security of cryptographic protocols, which guarantees security even when a secure protocol is composed of an arbitrary set of protocols, or more generally when the protocol is used as a component of a system.
Fuzzy extractors: How to generate strong keys from biometrics and other noisy data
Yevgeniy Dodis,Leonid Reyzin,Adam Smith +2 more
- 02 May 2004
TL;DR: This work provides formal definitions and efficient secure techniques for turning biometric information into keys usable for any cryptographic application, and reliably and securely authenticating biometric data.
Authenticated key exchange secure against dictionary attacks
Mihir Bellare,David Pointcheval,Phillip Rogaway +2 more
- 14 May 2000
TL;DR: Correctness for the idea at the center of the Encrypted Key-Exchange protocol of Bellovin and Merritt is proved: it is proved security, in an ideal-cipher model, of the two-flow protocol at the core of EKE.
Provably secure password-authenticated key exchange using Diffie-Hellman
Victor Boyko,Philip D. MacKenzie,Sarvar Patel +2 more
- 14 May 2000
TL;DR: The first Diffie-Hellman-based password-authenticated key exchange protocol was proposed in this article, which is provably secure in the random oracle model against both passive and active adversaries.