MicroNova: Folding-Based Arguments with Efficient (On-Chain) Verification
Jiaxing Zhao, Srinath T. V. Setty, Weidong Cui, Greg Zaverucha
摘要
We describe the design and implementation of MicroNova, a folding-based recursive argument for producing proofs of incremental computations of the form , where is a possibly non-deterministic computation (encoded using a constraint system such as R1CS), is the initial input, is the output, and The proof of an -step computation is produced step-by-step such that the proof size nor the time to verify it depends on . The proof at the final iteration is then compressed, to achieve further succinctness in terms of proof size and verification time. Compared to prior folding-based arguments, a distinguishing aspect of MicroNova is the concrete efficiency of the verifier-even in a resource-constrained environment such as Ethereum's blockchain. In particular, the compressed proof consists of O(log N) group elements and it can be verified with O(log N) group scalar multiplications and two pairing operations, where is the number of constraints for a single invocation of MicroNova requires a universal trusted setup and can employ any existing setup material created for the popular KZG univariate polynomial commitment scheme. Finally, we implement and experimentally evaluate MicroNova. We find that MicroNova's proofs can be efficiently verified on the Ethereum blockchain with ≈2.2M gas. Furthermore, MicroNova's prover incurs minimal overheads atop its baseline Nova's prover.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了最后一个公式,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 Paper1
问问它们各自怎么用它它引用的顶会 Paper15
- 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
- Poseidon: A New Hash Function for Zero-Knowledge Proof SystemsLorenzo Grassi, Dmitry Khovratovich, Christian Rechberger, Arnab Roy 等USENIX Security 2021 · 被引用 410 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
- Spartan: Efficient and General-Purpose zkSNARKs Without Trusted SetupSrinath T. V. SettyCRYPTO 2020 · 被引用 262 次
相关 Paper
- HyperNova: Recursive Arguments for Customizable Constraint SystemsAbhiram Kothapalli, Srinath T. V. SettyCRYPTO 2024 · 被引用 41 次
- Nebula: Proving Machine Executions via Folding SchemesArasu Arun, Srinath T. V. SettyS&P 2026 · 被引用 1 次
- Nova: Recursive Zero-Knowledge Arguments from Folding SchemesAbhiram Kothapalli, Srinath T. V. Setty, Ioanna TziallaCRYPTO 2022 · 被引用 123 次
- NeutronNova: Group-Based Folding Done RightAbhiram Kothapalli, Srinath SettyCRYPTO 2026
- KZH-Fold: Accountable Voting from Sublinear AccumulationGeorge Kadianakis, Arantxa Zapico, Hossein Hafezi, Benedikt BünzCCS 2025 · 被引用 1 次
