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Adaptively Secure Proxy Re-encryption., , , and . Public Key Cryptography (2), volume 11443 of Lecture Notes in Computer Science, page 317-346. Springer, (2019)Simple Verifiable Delay Functions.. ITCS, volume 124 of LIPIcs, page 60:1-60:15. Schloss Dagstuhl - Leibniz-Zentrum für Informatik, (2019)Grafting Key Trees: Efficient Key Management for Overlapping Groups., , , , , , , and . IACR Cryptol. ePrint Arch., (2021)Watermarkable and Zero-Knowledge Verifiable Delay Functions from any Proof of Exponentiation., and . IACR Cryptol. ePrint Arch., (2024)Finding a Nash Equilibrium Is No Easier Than Breaking Fiat-Shamir., , , , , and . Electron. Colloquium Comput. Complex., (2019)Reversible Proofs of Sequential Work., , , , and . IACR Cryptol. ePrint Arch., (2019)Coffee: Fast Healing Concurrent Continuous Group Key Agreement for Decentralized Group Messaging., , , , , and . IACR Cryptol. ePrint Arch., (2022)Efficiently Testable Circuits., , , , , and . IACR Cryptol. ePrint Arch., (2022)HIDE & SEEK: Privacy-Preserving Rebalancing on Payment Channel Networks., , , , , and . IACR Cryptol. ePrint Arch., (2021)Keep the Dirt: Tainted TreeKEM, an Efficient and Provably Secure Continuous Group Key Agreement Protocol., , , , , , , and . IACR Cryptol. ePrint Arch., (2019)