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On Ends-to-Ends Encryption: Asynchronous Group Messaging with Strong Security Guarantees.

, , , , and . IACR Cryptology ePrint Archive, (2017)

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Randomness Improvements for Security Protocols., , , , and . RFC, (October 2020)Realistic, strong and provable key exchange security.. University of Oxford, UK, (2018)British Library, EThOS.A Formal Security Analysis of the Signal Messaging Protocol., , , , and . EuroS&P, page 451-466. IEEE, (2017)Decentralizing Digital Identity: Open Challenges for Distributed Ledgers., , and . EuroS&P Workshops, page 75-78. IEEE, (2018)Cyber security centre: University of Oxford, United Kingdom.. ACM Crossroads, 21 (3): 56-57 (2015)On Ends-to-Ends Encryption: Asynchronous Group Messaging with Strong Security Guarantees., , , , and . ACM Conference on Computer and Communications Security, page 1802-1819. ACM, (2018)Security Analysis for Randomness Improvements for Security Protocols., , , and . IACR Cryptology ePrint Archive, (2018)A Formal Security Analysis of the Signal Messaging Protocol., , , , and . J. Cryptol., 33 (4): 1914-1983 (2020)Limiting the impact of unreliable randomness in deployed security protocols., , , , and . CSF, page 277-287. IEEE, (2020)On Ends-to-Ends Encryption: Asynchronous Group Messaging with Strong Security Guarantees., , , , and . IACR Cryptology ePrint Archive, (2017)