TENET: Sublogarithmic Proof and Sublinear Verifier Inner Product Argument without a Trusted Setup

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초록

We propose a new inner product argument (IPA), called TENET, which features sublogarithmic proof size and sublinear verifier without a trusted setup. IPA is a core primitive for various advanced proof systems including range proofs, circuit satisfiability, and polynomial commitment, particularly where a trusted setup is hard to apply. At ASIACRYPT 2022, Kim, Lee, and Seo showed that pairings can be utilized to exceed the complexity barrier of the previous discrete logarithm-based IPA without a trusted setup. More precisely, they proposed two pairing-based IPAs, one with sublogarithmic proof size and the other one with sublinear verifier cost, but they left achieving both complexities simultaneously as an open problem. We investigate the obstacles for this open problem and then provide our solution TENET, which achieves both sublogarithmic proof size and sublinear verifier. We prove the soundness of TENET under the discrete logarithm assumption and double pairing assumption.

키워드

Inner product argumentTransparent setupZero knowledge proofArtificial intelligenceCircuit satisfiabilityDiscrete logarithmsInner productInner product argumentProof systemSublinearTransparent setupZero-knowledge proofsCryptography
제목
TENET: Sublogarithmic Proof and Sublinear Verifier Inner Product Argument without a Trusted Setup
저자
Lee, HyeonbumSeo, Jae Hong
DOI
10.1007/978-3-031-41326-1_12
발행일
2023-08
유형
Proceedings Paper
저널명
Lecture Notes in Computer Science
14128 LNCS
페이지
214 ~ 234