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Free, publicly-accessible full text available August 13, 2026
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Corrigan-Gibbs, Henry; Henzinger, Alexandra; Tauman_Kalai, Yael; Vaikuntanathan, Vinod (, Springer Nature Switzerland)Free, publicly-accessible full text available January 1, 2026
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Henzinger, Alexandra; Dauterman, Emma; Corrigan-Gibbs, Henry; Zeldovich, Nickolai (, ACM)
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Henzinger, Alexandra; Hong, Matthew M.; Corrigan-Gibbs, Henry; Meiklejohn, Sarah; Vaikuntanathan, Vinod (, USENIX Security Symposium)We present SimplePIR, the fastest single-server private information retrieval scheme known to date. SimplePIR’s security holds under the learning-with-errors assumption. To answer a client’s query, the SimplePIR server performs fewer than one 32-bit multiplication and one 32-bit addition per database byte. SimplePIR achieves 10 GB/s/core server throughput, which approaches the memory bandwidth of the machine and the performance of the fastest two-server private-information-retrieval schemes (which require non-colluding servers). SimplePIR has relatively large communication costs: to make queries to a 1 GB database, the client must download a 121 MB "hint" about the database contents; thereafter, the client may make an unbounded number of queries, each requiring 242 KB of communication. We present a second single-server scheme, DoublePIR, that shrinks the hint to 16 MB at the cost of slightly higher per-query communication (345 KB) and slightly lower throughput (7.4 GB/s/core). Finally, we apply our new private-information-retrieval schemes, together with a novel data structure for approximate set membership, to the task of private auditing in Certificate Transparency. We achieve a strictly stronger notion of privacy than Google Chrome’s current approach with modest communication overheads: 16 MB of download per month, along with 150 bytes per TLS connection.more » « less
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