English

On the Impossibility of Post-Quantum Black-Box Zero-Knowledge in Constant Rounds

Cryptography and Security 2021-06-15 v2 Quantum Physics

Abstract

We investigate the existence of constant-round post-quantum black-box zero-knowledge protocols for NP\mathbf{NP}. As a main result, we show that there is no constant-round post-quantum black-box zero-knowledge argument for NP\mathbf{NP} unless NPBQP\mathbf{NP}\subseteq \mathbf{BQP}. As constant-round black-box zero-knowledge arguments for NP\mathbf{NP} exist in the classical setting, our main result points out a fundamental difference between post-quantum and classical zero-knowledge protocols. Combining previous results, we conclude that unless NPBQP\mathbf{NP}\subseteq \mathbf{BQP}, constant-round post-quantum zero-knowledge protocols for NP\mathbf{NP} exist if and only if we use non-black-box techniques or relax certain security requirements such as relaxing standard zero-knowledge to ϵ\epsilon-zero-knowledge. Additionally, we also prove that three-round and public-coin constant-round post-quantum black-box ϵ\epsilon-zero-knowledge arguments for NP\mathbf{NP} do not exist unless NPBQP\mathbf{NP}\subseteq \mathbf{BQP}.

Cite

@article{arxiv.2103.11244,
  title  = {On the Impossibility of Post-Quantum Black-Box Zero-Knowledge in Constant Rounds},
  author = {Nai-Hui Chia and Kai-Min Chung and Qipeng Liu and Takashi Yamakawa},
  journal= {arXiv preprint arXiv:2103.11244},
  year   = {2021}
}

Comments

46 pages

R2 v1 2026-06-24T00:23:09.821Z