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Decentralized crypto-currencies based on the blockchain architecture under-utilize available network bandwidth, making them unable to scale to thousands of transactions per second.
Reducibility among combinatorial problems
R. M. Karp · 1972
Earlier work this paper cites.
Publicly verifiable secret sharing
M. Stadler · 1996
Earlier work this paper cites.
Chapter 11–markov chains, 405-470
C. M. Grinstead and J. L. Snell · 1997
Earlier work this paper cites.
Bitcoin: A peer-to-peer electronic cash system, 2008
S. Nakamoto · 2008
Earlier work this paper cites.
Ruin Probabilities (2nd Edition)
A. Soren and A. Hansjorg · 2010
Earlier work this paper cites.
Tezos: A self-amending crypto-ledger, 2014
L. Goodman · 2014
Earlier work this paper cites.
A fast and scalable payment network with bitcoin duplex micropayment channels
C. Decker and R. Wattenhofer · 2015
Earlier work this paper cites.
Inclusive block chain protocols
Y. Lewenberg, Y. Sompolinsky, and A. Zohar · 2015
Earlier work this paper cites.
Secure high-rate transaction processing in bitcoin
Y. Sompolinsky and A. Zohar · 2015
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On scaling decentralized blockchains
K. Croman, C. Decker, I. Eyal, A. E. Gencer, A. Juels, A. Kosba, A. Miller, P. Saxena, E. Shi, E. G. Sirer, et al · 2016
Cited alongside, same era.
A secure sharding protocol for open blockchains
L. Luu, V. Narayanan, C. Zheng, K. Baweja, S. Gilbert, and P. Saxena · 2016
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Spectre: A fast and scalable cryptocurrency protocol
Y. Sompolinsky, Y. Lewenberg, and A. Zohar · 2016
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Consensus in the age of blockchains
S. Bano, A. Sonnino, M. Al-Bassam, S. Azouvi, P. McCorry, S. Meiklejohn, and G. Danezis · 2017
Cited alongside, same era.
The tangle, 2017
S. Popov · 2017
Cited alongside, same era.
Decentralization in bitcoin and ethereum networks
A. E. Gencer, S. Basu, I. Eyal, R. van Renesse, and E. G. Sirer · 2018
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A better method to analyze blockchain consistency
L. Kiffer, R. Rajaraman, and A. Shelat · 2018
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Omniledger: A secure, scale-out, decentralized ledger via sharding
E. Kokoris-Kogias, P. Jovanovic, L. Gasser, N. Gailly, E. Syta, and B. Ford · 2018
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Scaling nakamoto consensus to thousands of transactions per second
C. Li, P. Li, D. Zhou, W. Xu, F. Long, and A. Yao · 2018
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Ohie: Blockchain scaling made simple
H. Yu, I. Nikolic, R. Hou, and P. Saxena · 2018
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Scaling byzantine consensus: A broad analysis
C. Berger and H. P. Reiser · 2018
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A survey of two verifiable delay functions
D. Boneh, B. Bünz, and B. Fisch · 2018
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The zilliqa technical whitepaper
Zilliqa
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Tezos documentation · 2019
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Scalable and probabilistic leaderless bft consensus through metastability
T. Rocket, M. Yin, K. Sekniqi, R. van Renesse, and E. G. Sirer · 2019
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Topological analysis of bitcoin’s lightning network
I. A. Seres, L. Gulyás, D. A. Nagy, and P. Burcsi · 2019
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