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Verifiable Random Functions: Relations to Identity-Based Key Encapsulation and New Constructions.

, , and . J. Cryptology, 27 (3): 544-593 (2014)

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Algebraic (trapdoor) one-way functions: Constructions and applications., , , and . Theor. Comput. Sci., (2015)ADSNARK: Nearly Practical and Privacy-Preserving Proofs on Authenticated Data., , , and . IEEE Symposium on Security and Privacy, page 271-286. IEEE Computer Society, (2015)Uniqueness is a Different Story: Impossibility of Verifiable Random Functions from Trapdoor Permutations., and . IACR Cryptology ePrint Archive, (2010)Nearly Practical and Privacy-Preserving Proofs on Authenticated Data., , and . IACR Cryptology ePrint Archive, (2014)Optimistic Mixing, Revisited., and . IACR Cryptology ePrint Archive, (2018)Constructing Certificateless Encryption and ID-Based Encryption from ID-Based Key Agreement., , and . IACR Cryptology ePrint Archive, (2009)On the (In)Security of SNARKs in the Presence of Oracles., and . TCC (B1), volume 9985 of Lecture Notes in Computer Science, page 108-138. (2016)Verifiable delegation of computation on outsourced data., , and . ACM Conference on Computer and Communications Security, page 863-874. ACM, (2013)A privacy-compliant fingerprint recognition system based on homomorphic encryption and Fingercode templates., , , , , , , , , and 1 other author(s). BTAS, page 1-7. IEEE, (2010)"Forgot your password again?": acceptance and user experience of a chatbot for in-company IT support., , and . MUM, page 37:1-37:11. ACM, (2019)