Post-Quantum Multi-Party Computation
Amit Agarwal, James Bartusek, Vipul Goyal, Dakshita Khurana, Giulio Malavolta
Abstract
We initiate the study of multi-party computation for classical functionalities (in the plain model) with security against malicious polynomial-time quantum adversaries. We observe that existing techniques readily give a polynomial-round protocol, but our main result is a construction of constant-round postquantum multi-party computation. We assume mildly super-polynomial quantum hardness of learning with errors (LWE), and polynomial quantum hardness of an LWE-based circular security assumption. Along the way, we develop the following cryptographic primitives that may be of independent interest:
• A spooky encryption scheme for relations computable by quantum circuits, from the quantum hardness of an LWE-based circular security assumption. This yields the first quantum multi-key fullyhomomorphic encryption scheme with classical keys.
• Constant-round zero-knowledge secure against multiple parallel quantum verifiers from spooky encryption for relations computable by quantum circuits.
To enable this, we develop a new straight-line non-black-box simulation technique against parallel verifiers that does not clone the adversary's state. This forms the heart of our technical contribution and may also be relevant to the classical setting.
• A constant-round post-quantum non-malleable commitment scheme, from the mildly super-polynomial quantum hardness of LWE.
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Install the CLIlune papers fulltext 54e970c9-419c-4d7c-9f9e-ea4fc83c4d99Cited by top-tier papers8
- One-Way Functions Imply Secure Computation in a Quantum WorldJames Bartusek, Andrea Coladangelo, Dakshita Khurana, Fermi MaCRYPTO 2021 · 57 citations
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- On the Concurrent Composition of Quantum Zero-KnowledgePrabhanjan Ananth, Kai-Min Chung, Rolando L. La PlacaCRYPTO 2021 · 8 citations
- Post-quantum Simulatable Extraction with Minimal Assumptions: Black-Box and Constant-RoundNai-Hui Chia, Kai-Min Chung, Xiao Liang, Takashi YamakawaCRYPTO 2022 · 8 citations
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