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Addressing Side-Channel Vulnerabilities in the Discrete Ziggurat Sampler.

, , , and . SPACE, volume 11348 of Lecture Notes in Computer Science, page 65-84. Springer, (2018)

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Accelerating Homomorphic Encryption using Approximate Computing Techniques., and . ICETE (2), page 380-387. ScitePress, (2020)Compact and provably secure lattice-based signatures in hardware., , , and . ISCAS, page 1-4. IEEE, (2017)Addressing Side-Channel Vulnerabilities in the Discrete Ziggurat Sampler., , , and . SPACE, volume 11348 of Lecture Notes in Computer Science, page 65-84. Springer, (2018)Optimized Schoolbook Polynomial Multiplication for Compact Lattice-Based Cryptography on FPGA., , , , and . IEEE Trans. Very Large Scale Integr. Syst., 27 (10): 2459-2463 (2019)Efficient Soft Core Multiplier for Post Quantum Digital Signatures., , , , , and . ISCAS, page 1-5. IEEE, (2024)On Practical Discrete Gaussian Samplers for Lattice-Based Cryptography., , , , and . IEEE Trans. Computers, 67 (3): 322-334 (2018)Error Samplers for Lattice-Based Cryptography -Challenges, Vulnerabilities and Solutions., , , , , and . APCCAS, page 411-414. IEEE, (2018)Deep Learning Enhanced Side Channel Analysis on CRYSTALS-Kyber., , , , , , and . ISQED, page 1-8. IEEE, (2024)Time-independent discrete Gaussian sampling for post-quantum cryptography., , , and . FPT, page 241-244. IEEE, (2016)Efficient, Error-Resistant NTT Architectures for CRYSTALS-Kyber FPGA Accelerators., , , , , , and . VLSI-SoC, page 1-6. IEEE, (2023)