Time- and Space-Efficient Arguments from Groups of Unknown Order
Alexander R. Block, Justin Holmgren, Alon Rosen, Ron D. Rothblum, Pratik Soni
摘要
We construct public-coin time-and space-efficient zero-knowledge arguments for NP. For every time T and space S non-deterministic RAM computation, the prover runs in time T • polylog(T ) and space S • polylog(T ), and the verifier runs in time n • polylog(T ), where n is the input length. Our protocol relies on hidden order groups, which can be instantiated with a trusted setup from the hardness of factoring (products of safe primes), or without a trusted setup using class groups. The argument-system can heuristically be made non-interactive using the Fiat-Shamir transform.
Our proof builds on DARK (Bünz et al., Eurocrypt 2020), a recent succinct and efficiently verifiable polynomial commitment scheme. We show how to implement a variant of DARK in a time-and spaceefficient way. Along the way we:
-
Identify a significant gap in the proof of security of DARK.
-
Give a non-trivial modification of the DARK scheme that overcomes the aforementioned gap. The modified version also relies on significantly weaker cryptographic assumptions than those in the original DARK scheme. Our proof utilizes ideas from the theory of integer lattices in a novel way. 3. Generalize Pietrzak's (ITCS 2019) proof of exponentiation (PoE) protocol to work with general groups of unknown order (without relying on any cryptographic assumption). In proving these results, we develop general-purpose techniques for working with (hidden order) groups, which may be of independent interest.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper12
- Blaze: Fast SNARKs from Interleaved RAA CodesMartijn Brehm, Binyi Chen, Ben Fisch, Nicolas Resch 等EUROCRYPT 2025 · 被引用 15 次
- Practical Statistically-Sound Proofs of Exponentiation in Any GroupCharlotte Hoffmann, Pavel Hubácek, Chethan Kamath, Karen Klein 等CRYPTO 2022 · 被引用 14 次
- Two Shuffles Make a RAM: Improved Constant Overhead Zero Knowledge RAMYibin Yang, David HeathUSENIX Security 2024 · 被引用 14 次
- SLAP: Succinct Lattice-Based Polynomial Commitments from Standard AssumptionsMartin R. Albrecht, Giacomo Fenzi, Oleksandra Lapiha, Ngoc Khanh NguyenEUROCRYPT 2024 · 被引用 12 次
- Towards Practical Zero-Knowledge Proof for PSPACEAshwin Karthikeyan, Hengyu Liu, Kuldeep S. Meel, Ning LuoS&P 2026 · 被引用 4 次
它引用的顶会 Paper9
- Bulletproofs: Short Proofs for Confidential Transactions and MoreBenedikt Bünz, Jonathan Bootle, Dan Boneh, Andrew Poelstra 等S&P 2018 · 被引用 1,285 次
- Doubly-Efficient zkSNARKs Without Trusted SetupRiad S. Wahby, Ioanna Tzialla, Abhi Shelat, Justin Thaler 等S&P 2018 · 被引用 356 次
- Marlin: Preprocessing zkSNARKs with Universal and Updatable SRSAlessandro Chiesa, Yuncong Hu, Mary Maller, Pratyush Mishra 等EUROCRYPT 2020 · 被引用 356 次
- Transparent SNARKs from DARK CompilersBenedikt Bünz, Ben Fisch, Alan SzepieniecEUROCRYPT 2020 · 被引用 240 次
- Transparent Polynomial Delegation and Its Applications to Zero Knowledge ProofJiaheng Zhang, Tiancheng Xie, Yupeng Zhang, Dawn SongS&P 2020 · 被引用 192 次
相关 Paper
- Non-interactive Zero-Knowledge in Pairing-Free Groups from Weaker AssumptionsGeoffroy Couteau, Shuichi Katsumata, Bogdan UrsuEUROCRYPT 2020 · 被引用 28 次
- Non-interactive Zero Knowledge from Sub-exponential DDHAbhishek Jain, Zhengzhong JinEUROCRYPT 2021 · 被引用 49 次
- A Non-PCP Approach to Succinct Quantum-Safe Zero-KnowledgeJonathan Bootle, Vadim Lyubashevsky, Ngoc Khanh Nguyen, Gregor SeilerCRYPTO 2020 · 被引用 51 次
- Non-interactive Zero-Knowledge from Non-interactive Batch ArgumentsJeffrey Champion, David J. WuCRYPTO 2023 · 被引用 9 次
- Public-Coin 3-Round Zero-Knowledge from Learning with Errors and Keyless Multi-Collision-Resistant HashSusumu KiyoshimaCRYPTO 2022 · 被引用 5 次
