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Faster Lattice-Based KEMs via a Generic Fujisaki-Okamoto Transform Using Prefix Hashing.

, , , , and . CCS, page 2722-2737. ACM, (2021)

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A Thorough Treatment of Highly-Efficient NTRU Instantiations., , , , , and . Public Key Cryptography (1), volume 13940 of Lecture Notes in Computer Science, page 65-94. Springer, (2023)CRYSTALS - Kyber: A CCA-Secure Module-Lattice-Based KEM., , , , , , , , and . EuroS&P, page 353-367. IEEE, (2018)Practical Product Proofs for Lattice Commitments., , and . CRYPTO (2), volume 12171 of Lecture Notes in Computer Science, page 470-499. Springer, (2020)NTT Multiplication for NTT-unfriendly Rings New Speed Records for Saber and NTRU on Cortex-M4 and AVX2., , , , , and . IACR Trans. Cryptogr. Hardw. Embed. Syst., 2021 (2): 159-188 (2021)Practical Lattice-Based Zero-Knowledge Proof Systems.. ETH Zurich, Zürich, Switzerland, (2022)base-search.net (ftethz:oai:www.research-collection.ethz.ch:20.500.11850/560505).More Efficient Amortization of Exact Zero-Knowledge Proofs for LWE., , , and . ESORICS (2), volume 12973 of Lecture Notes in Computer Science, page 608-627. Springer, (2021)SMILE: Set Membership from Ideal Lattices with Applications to Ring Signatures and Confidential Transactions., , and . CRYPTO (2), volume 12826 of Lecture Notes in Computer Science, page 611-640. Springer, (2021)A Non-PCP Approach to Succinct Quantum-Safe Zero-Knowledge., , , and . CRYPTO (2), volume 12171 of Lecture Notes in Computer Science, page 441-469. Springer, (2020)Shorter Lattice-Based Zero-Knowledge Proofs via One-Time Commitments., , and . IACR Cryptol. ePrint Arch., (2020)Shorter Lattice-Based Group Signatures via Älmost Free" Encryption and Other Optimizations., , , and . ASIACRYPT (4), volume 13093 of Lecture Notes in Computer Science, page 218-248. Springer, (2021)