ACKNOWLEDGMENTS Thanks to Iddo Bentov Ethan Heilman Jelle van den Hooff and our

Acknowledgments thanks to iddo bentov ethan heilman

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ACKNOWLEDGMENTS Thanks to Iddo Bentov, Ethan Heilman, Jelle van den Hooff, and our shepherd, Robbert van Renesse, for their helpful com- ments and suggestions. Gilad, Hemo, and Zeldovich were supported by NSF awards CNS-1413920 and CNS-1414119. 16
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REFERENCES [1] M. Abd-El-Malek, G. R. Ganger, G. R. Goodson, M. K. Reiter, and J. J. Wylie. Fault-scalable Byzantine fault- tolerant services. In Proceedings of the 20th ACM Sym- posium on Operating Systems Principles (SOSP) , pages 59–74, Brighton, UK, Oct. 2005. [2] I. Bentov and R. Kumaresan. How to use Bitcoin to design fair protocols. In Proceedings of the 34th Annual International Cryptology Conference (CRYPTO) , Santa Barbara, CA, Aug. 2014. [3] I. Bentov, C. Lee, A. Mizrahi, and M. Rosenfeld. Proof of activity: Extending Bitcoin’s proof of work via proof of stake. In Proceedings of the 2014 Joint Workshop on Pricing and Incentives in Networks and Systems , Austin, TX, June 2014. [4] I. Bentov, A. Gabizon, and A. Mizrahi. Cryptocurren- cies without proof of work. In Proceedings of the 2016 Financial Cryptography and Data Security Conference , 2016. [5] I. Bentov, P. Hubáček, T. Moran, and A. Nadler. Tor- toise and hares consensus: the Meshcash framework for incentive-compatible, scalable cryptocurrencies. Cryptology ePrint Archive, Report 2017/300, Apr. 2017. . [6] D. J. Bernstein. Curve25519: New Diffie-Hellman speed records. In Proceedings of the 9th International Confer- ence on Theory and Practice in Public-Key Cryptogra- phy (PKC) , pages 207–228, New York, NY, Apr. 2006. [7] Bitcoin Wiki. Confirmation. . it/wiki/Confirmation , 2017. [8] BitcoinWiki. Mining hardware comparison, 2016. hardware_comparison . [9] BitcoinWiki. Bitcoin scalability. . , 2017. [10] BitcoinWiki. Proof of stake. . it/wiki/Proof_of_Stake , 2017. [11] D. Boneh and M. K. Franklin. Identity-based encryption from the Weil pairing. In Proceedings of the 21st Annual International Cryptology Conference (CRYPTO) , Santa Barbara, CA, Aug. 2001. [12] G. Brockman. Stellar, July 2014. . com/blog/stellar . [13] V. Buterin. Minimal slashing conditions. https: // slashing-conditions-20f0b500fc6c , Mar. 2017. [14] C. Cachin, K. Kursawe, F. Petzold, and V. Shoup. Secure and efficient asynchronous broadcast protocols. In Proceedings of the 21st Annual International Cryptology Conference (CRYPTO) , pages 524–541, Santa Barbara, CA, Aug. 2001. [15] M. Castro and B. Liskov. Practical Byzantine fault tol- erance and proactive recovery. ACM Transactions on Computer Systems , 20(4), Nov. 2002. [16] J. Chen and S. Micali. Algorand. Technical report, 2017. URL . [17] A. Clement, E. L. Wong, L. Alvisi, M. Dahlin, and M. Marchetti. Making Byzantine fault tolerant sys- tems tolerate Byzantine faults. In Proceedings of the 6th Symposium on Networked Systems Design and Im- plementation (NSDI) , pages 153–168, Boston, MA, Apr. 2009. [18] C. Decker and R. Wattenhofer. Information propaga- tion in the Bitcoin network. In Proceedings of the 13th IEEE International Conference on Peer-to-Peer Comput- ing , Sept. 2013.
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