A Toolkit for Succinct Lattice-Based Zero Knowledge Proofs
Beatrice Biasioli, Madalina Bolboceanu, Vadim Lyubashevsky, Antonio Merino-Gallardo, Michał Osadnik, Gregor Seiler, Patrick Steuer
Abstract
The development of proof systems whose security relies on the hardness of lattice problems has been a fruitful research area in recent years. By leveraging the techniques introduced in LaBRADOR (Beullens, Seiler, Crypto 2023), the state-of-the-art lattice-based schemes have very fast provers and have output sizes under 100KB for arbitrarily large statements. These proofs are in fact the smallest, and often have the fastest provers, out of all post-quantum schemes.
In addition to succinctness, many applications also require witness privacy. Achieving this can, in theory, be done by combining LaBRADOR with a linear-size zero-knowledge proof. While such a combination has already been described in the LaBRADOR paper itself, as well as in the works of Albrecht et al. (Eurocrypt 2024) and del Pino et al. (Crypto 2025), its concrete costs remained unexplored.
In this work, we provide the first concrete construction and implementation that adds zero-knowledge proofs to LaBRADOR by integrating the linear-size zero-knowledge proof from (Lyubashevsky, Nguyen, Plançon, Crypto 2022) into the protocol. We describe the non-trivial challenges that this entails and show practicality of the construction by benchmarking several use-cases. We make the proof system and primitives accessible by extending the LaZer library (Lyubashevsky, Seiler, Steuer, CCS 2024) in a way that they can easily be used in other applications.
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 e3f145d6-cf51-4ccd-9b72-af9ce7cd1bc0Related papers
- LaBRADOR: Compact Proofs for R1CS from Module-SISWard Beullens, Gregor SeilerCRYPTO 2023 · 59 citations
- Orthus: Practical Sublinear Batch-Verification of Lattice Relations from Standard AssumptionsMadalina Bolboceanu, Jonathan Bootle, Vadim Lyubashevsky, Antonio Merino-Gallardo et al.CRYPTO 2026 · 1 citation
- The LaZer Library: Lattice-Based Zero Knowledge and Succinct Proofs for Quantum-Safe PrivacyVadim Lyubashevsky, Gregor Seiler, Patrick SteuerCCS 2024 · 13 citations
- Shorter and Faster Post-Quantum Designated-Verifier zkSNARKs from LatticesYuval Ishai, Hang Su, David J. WuCCS 2021 · 3 citations
- Greyhound: Fast Polynomial Commitments from LatticesNgoc Khanh Nguyen, Gregor SeilerCRYPTO 2024 · 15 citations
