Server-Aided Anonymous Credentials
Rutchathon Chairattana-Apirom, Franklin Harding, Anna Lysyanskaya, Stefano Tessaro
Abstract
This paper formalizes the notion of server-aided anonymous credentials (SAACs), a new model for anonymous credentials (ACs) where, in the process of showing a credential, the holder is helped by additional auxiliary information generated in an earlier (anonymous) interaction with the issuer. This model enables lightweight instantiations of 'publicly verifiable and multi-use' ACs from pairing-free elliptic curves, which is important for compliance with existing national standards. A recent candidate for the EU Digital Identity Wallet, BBS#, roughly adheres to the SAAC model we have developed; however, it lacks formal security definitions and proofs.
In this paper, we provide rigorous definitions of security for SAACs, and show how to realize SAACs from the weaker notion of keyed-verification ACs (KVACs) and special types of oblivious issuance protocols for zero-knowledge proofs. We instantiate this paradigm to obtain two constructions: one achieves statistical anonymity with unforgeability under the Gap -SDH assumption, and the other achieves computational anonymity and unforgeability under the DDH assumption.
Ask about this paper
Ask your agent about it.
Lune has read the top-tier papers around this one, so every answer names the papers it rests on.
Your agent calls
Lunesearch_papers
Free to start. No credit card required.
Terminal
Install the CLIlune papers get 208f2941-6a69-4d75-989b-32794ca2d450Related papers
- Device-Bound Anonymous Credentials With(out) Trusted HardwareKarla Friedrichs, Franklin Harding, Anja Lehmann, Anna LysyanskayaEUROCRYPT 2026 · 1 citation
- With a Little Help from My Friends: Constructing Practical Anonymous CredentialsLucjan Hanzlik, Daniel SlamanigCCS 2021 · 52 citations
- Revisiting Keyed-Verification Anonymous CredentialsMichele OrrùCCS 2025
- Differential Trust: Dynamic Multi-Authority Anonymous Credentials with Epoch-Weighted UpdatesChen Li, Jianting Ning, Xiulong Liu, Yulin LiuUSENIX Security 2026
- zk-creds: Flexible Anonymous Credentials from zkSNARKs and Existing Identity InfrastructureMichael Rosenberg, Jacob D. White, Christina Garman, Ian MiersS&P 2023
