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High-Speed NTT-based Polynomial Multiplication Accelerator for Post-Quantum Cryptography., , and . ARITH, page 94-101. IEEE, (2021)Error Detection Schemes Assessed on FPGA for Multipliers in Lattice-Based Key Encapsulation Mechanisms in Post-Quantum Cryptography., , , , and . IEEE Trans. Emerg. Top. Comput., 11 (3): 791-797 (July 2023)A Structure-independent Approach for Fault Detection Hardware Implementations of the Advanced Encryption Standard., and . FDTC, page 47-53. IEEE Computer Society, (2007)A High-Performance and Scalable Hardware Architecture for Isogeny-Based Cryptography., , and . IEEE Trans. Computers, 67 (11): 1594-1609 (2018)Optimized Algorithms and Architectures for Montgomery Multiplication for Post-quantum Cryptography., , and . CANS, volume 11829 of Lecture Notes in Computer Science, page 83-98. Springer, (2019)On Fast Calculation of Addition Chains for Isogeny-Based Cryptography., , , and . Inscrypt, volume 10143 of Lecture Notes in Computer Science, page 323-342. Springer, (2016)Reliable hash trees for post-quantum stateless cryptographic hash-based signatures., and . DFTS, page 103-108. IEEE Computer Society, (2015)High-Performance Fault Diagnosis Schemes for Efficient Hash Algorithm BLAKE., , , and . LASCAS, page 201-204. IEEE, (2019)Reliable Concurrent Error Detection Architectures for Extended Euclidean-Based Division Over GF(2m)., , , and . IEEE Trans. Very Large Scale Integr. Syst., 22 (5): 995-1003 (2014)Energy-Efficient Long-term Continuous Personal Health Monitoring., , , , and . IEEE Trans. Multi Scale Comput. Syst., 1 (2): 85-98 (2015)