English

Quantum Secure Protocols for Multiparty Computations

Quantum Physics 2024-07-18 v2 Cryptography and Security

Abstract

Secure multiparty computation (MPC) schemes allow two or more parties to conjointly compute a function on their private input sets while revealing nothing but the output. Existing state-of-the-art number-theoretic-based designs face the threat of attacks through quantum algorithms. In this context, we present secure MPC protocols that can withstand quantum attacks. We first present the design and analysis of an information-theoretic secure oblivious linear evaluation (OLE), namely qOLE{\sf qOLE} in the quantum domain, and show that our qOLE{\sf qOLE} is safe from external attacks. In addition, our scheme satisfies all the security requirements of a secure OLE. We further utilize qOLE{\sf qOLE} as a building block to construct a quantum-safe multiparty private set intersection (MPSI) protocol.

Keywords

Cite

@article{arxiv.2312.16318,
  title  = {Quantum Secure Protocols for Multiparty Computations},
  author = {Tapaswini Mohanty and Vikas Srivastava and Sumit Kumar Debnath and Pantelimon Stanica},
  journal= {arXiv preprint arXiv:2312.16318},
  year   = {2024}
}