English

Post-Quantum Simulatable Extraction with Minimal Assumptions: Black-Box and Constant-Round

Cryptography and Security 2023-11-07 v3

Abstract

From the minimal assumption of post-quantum semi-honest oblivious transfers, we build the first ϵ\epsilon-simulatable two-party computation (2PC) against quantum polynomial-time (QPT) adversaries that is both constant-round and black-box (for both the construction and security reduction). A recent work by Chia, Chung, Liu, and Yamakawa (FOCS'21) shows that post-quantum 2PC with standard simulation-based security is impossible in constant rounds, unless either NPBQP\mathbf{NP} \subseteq \mathbf{BQP} or relying on non-black-box simulation. The ϵ\epsilon-simulatability we target is a relaxation of the standard simulation-based security that allows for an arbitrarily small noticeable simulation error ϵ\epsilon. Moreover, when quantum communication is allowed, we can further weaken the assumption to post-quantum secure one-way functions (PQ-OWFs), while maintaining the constant-round and black-box property. Our techniques also yield the following set of constant-round and black-box two-party protocols secure against QPT adversaries, only assuming black-box access to PQ-OWFs: - extractable commitments for which the extractor is also an ϵ\epsilon-simulator; - ϵ\epsilon-zero-knowledge commit-and-prove whose commit stage is extractable with ϵ\epsilon-simulation; - ϵ\epsilon-simulatable coin-flipping; - ϵ\epsilon-zero-knowledge arguments of knowledge for NP\mathbf{NP} for which the knowledge extractor is also an ϵ\epsilon-simulator; - ϵ\epsilon-zero-knowledge arguments for QMA\mathbf{QMA}. At the heart of the above results is a black-box extraction lemma showing how to efficiently extract secrets from QPT adversaries while disturbing their quantum state in a controllable manner, i.e., achieving ϵ\epsilon-simulatability of the post-extraction state of the adversary.

Keywords

Cite

@article{arxiv.2111.08665,
  title  = {Post-Quantum Simulatable Extraction with Minimal Assumptions: Black-Box and Constant-Round},
  author = {Nai-Hui Chia and Kai-Min Chung and Xiao Liang and Takashi Yamakawa},
  journal= {arXiv preprint arXiv:2111.08665},
  year   = {2023}
}
R2 v1 2026-06-24T07:41:04.912Z