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Proving Prêt à Voter Receipt Free Using Computational Security Models.

, , and . EVT/WOTE, USENIX Association, (2013)

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Privacy and Security in an Age of Surveillance (Dagstuhl Perspectives Workshop 14401)., , , and . Dagstuhl Reports, 4 (9): 106-123 (2014)Caveat Coercitor: Coercion-Evidence in Electronic Voting., , , and . IEEE Symposium on Security and Privacy, page 367-381. IEEE Computer Society, (2013)Permutations in Prêt à Voter., and . EVT/WOTE, USENIX Association, (2009)Corrections to scantegrity II: end-to-end verifiability by voters of optical scan elections through confirmation codes., , , , , , , , , and . IEEE Trans. Information Forensics and Security, 5 (1): 194 (2010)Voting Technologies and Trust., and . IEEE Security & Privacy, 4 (5): 50-56 (2006)Proving Prêt à Voter Receipt Free Using Computational Security Models., , and . EVT/WOTE, USENIX Association, (2013)Formal Analysis of Electronic Exams., , , , , and . SECRYPT, page 101-112. SciTePress, (2014)End-to-end verifiability., , , , , and . CoRR, (2015)vVote: a Verifiable Voting System (DRAFT)., , , and . CoRR, (2014)Modelling Dynamic Opacity Using Petri Nets with Silent Actions., , and . Formal Aspects in Security and Trust, volume 173 of IFIP, page 159-172. Springer, (2004)