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Secure Quantum Two-Party Computation: Impossibility and Constructions., , , and . IACR Cryptol. ePrint Arch., (2020)On the Possibility of Classical Client Blind Quantum Computing., , , and . Cryptogr., 5 (1): 3 (2021)Correction to: Dispelling myths on superposition attacks: formal security model and attack analyses., , and . Des. Codes Cryptogr., 90 (6): 1535 (2022)Cyber security in the quantum era., and . Commun. ACM, 62 (4): 120 (2019)Certified Randomness From Steering Using Sequential Measurements., , and . CoRR, (2020)Distributed Measurement-based Quantum Computation., , , and . QPL, volume 170 of Electronic Notes in Theoretical Computer Science, page 73-94. Elsevier, (2005)Quantum-enhanced secure delegated classical computing., , and . Quantum Inf. Comput., 16 (1&2): 61-86 (2016)Differential Privacy Amplification in Quantum and Quantum-inspired Algorithms., , and . CoRR, (2022)The Born Supremacy: Quantum Advantage and Training of an Ising Born Machine., , , and . CoRR, (2019)Complexity-Theoretic Limitations on Blind Delegated Quantum Computation., , , and . ICALP, volume 132 of LIPIcs, page 6:1-6:13. Schloss Dagstuhl - Leibniz-Zentrum für Informatik, (2019)