English

A New Approach to Post-Quantum Non-Malleability

Quantum Physics 2023-11-07 v3 Cryptography and Security

Abstract

We provide the first constant\mathit{constant}-round\mathit{round} construction of post-quantum non-malleable commitments under the minimal assumption that post\mathit{post}-quantum\mathit{quantum} one\mathit{one}-way\mathit{way} functions\mathit{functions} exist. We achieve the standard notion of non-malleability with respect to commitments. Prior constructions required Ω(logλ)\Omega(\log^*\lambda) rounds under the same assumption. We achieve our results through a new technique for constant-round non-malleable commitments which is easier to use in the post-quantum setting. The technique also yields an almost elementary proof of security for constant-round non-malleable commitments in the classical setting, which may be of independent interest. When combined with existing work, our results yield the first constant-round quantum-secure multiparty computation for both classical and quantum functionalities in\mathit{in} the\mathit{the} plain\mathit{plain} model\mathit{model}, under the polynomial\mathit{polynomial} hardness of quantum fully-homomorphic encryption and quantum learning with errors.

Keywords

Cite

@article{arxiv.2207.05861,
  title  = {A New Approach to Post-Quantum Non-Malleability},
  author = {Xiao Liang and Omkant Pandey and Takashi Yamakawa},
  journal= {arXiv preprint arXiv:2207.05861},
  year   = {2023}
}
R2 v1 2026-06-25T00:51:55.232Z