vdf

Papers (18)
# | Title | |
1. | Verifiable Delay Functions Dan Boneh, Joseph Bonneau, Benedikt Bünz, Ben Fisch. 2018 | |
2. | Efficient verifiable delay functions Wesolowski, Benjamin. 2019 | |
3. | Simple verifiable delay functions Pietrzak, Krzysztof Z. 2019 | |
4. | A Survey of Two Verifiable Delay Functions. Boneh, Dan and B\"unz, Benedikt and Fisch, Ben. 2018 | |
5. | Proofs-of-delay and randomness beacons in ethereum B\"unz, Benedikt and Goldfeder, Steven and Bonneau, Joseph. 2017 | |
6. | Continuous verifiable delay functions Ephraim, Naomi and Freitag, Cody and Komargodski, Ilan and Pass, Rafael. 2019 | |
7. | On the Security of Time-Locked Puzzles and Timed Commitments Jonathan Katz and Julian Loss and Jiayu Xu. 2020 | |
8. | Tight Verifiable Delay Functions D\"ottling, Nico and Garg, Sanjam and Malavolta, Giulio and Nalini, Prashant. 2019 | |
9. | Diogenes: Lightweight Scalable RSA Modulus Generation with a Dishonest Majority Megan Chen and Carmit Hazay and Yuval Ishai and Yuriy Kashnikov and Daniele Micciancio and Tarik Riviere and abhi shelat and Muthu Venkitasubramaniam and Ruihan Wang. 2020 | |
10. | Generic-Group Delay Functions Require Hidden-Order Groups Lior Rotem and Gil Segev and Ido Shahaf. 2020 | |
11. | A note on the low order assumption in class group of an imaginary quadratic number fields Karim Belabas and Thorsten Kleinjung and Antonio Sanso and Benjamin Wesolowski. 2020 | |
12. | Multi-instance Publicly Verifiable Time-lock Puzzle and its Applications Abadi, Aydin and Kiayias, Aggelos. 2021 | |
13. | Time-release Cryptography from Minimal Circuit Assumptions Samuel Jaques and Hart Montgomery and Arnab Roy. 2020 | |
14. | Lower bounds for the depth of modular squaring Benjamin Wesolowski and Ryan Williams. 2020 | |
15. | A Note on Low Order Assumptions in RSA groups István András Seres and Péter Burcsi. 2020 | |
16. | Trustless Groups of Unknown Order with Hyperelliptic Curves Samuel Dobson and Steven D. Galbraith. 2020 | |
17. | Binary quadratic forms Lipa Long. 2019 | |
18. | Short-lived zero-knowledge proofs and signatures Arasu Arun and Joseph Bonneau and Jeremy Clark. 2022 |
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