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EUROCRYPT2023Top-tier venue

Optimal Single-Server Private Information Retrieval

Mingxun Zhou, Wei-Kai Lin, Yiannis Tselekounis, Elaine Shi

2023Year
28Citations
6Top-tier citations

Abstract

We construct a single-server pre-processing Private Information Retrieval (PIR) scheme with optimal bandwidth and server computation (up to poly-logarithmic factors), assuming hardness of the Learning With Errors (LWE) problem. Our scheme achieves amortized O~λ(n)\widetilde{O}_{\lambda}(\sqrt{n}) server and client computation and O~λ(1)\widetilde{O}_\lambda(1) bandwidth per query, completes in a single roundtrip, and requires O~λ(n)\widetilde{O}_\lambda(\sqrt{n}) client storage. In particular, we achieve a significant reduction in bandwidth over the state-of-the-art scheme by Corrigan-Gibbs, Henzinger, and Kogan (Eurocrypt'22): their scheme requires as much as O~λ(n)\widetilde{O}_{\lambda}(\sqrt{n}) bandwidth per query, with comparable computational and storage overhead as ours.

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