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Two-dimensional color codes are a promising candidate for fault-tolerant quantum computing, as they have high encoding rates, transversal implementation of logical Clifford gates, and resource-efficient magic state preparation schemes.
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Daniel Litinski · 1905
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Jack Edmonds · 1965
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“Quantum codes on a lattice with boundary” (1998)
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Eric Dennis, Alexei Kitaev, Andrew Landahl, and John Preskill · 2002
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“Universal quantum computation with ideal clifford gates and noisy ancillas”
Sergey Bravyi and Alexei Kitaev · 2005
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H. Bombin and M. A. Martin-Delgado · 2006
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Skipper Seabold and Josef Perktold · 2010
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“Fault-tolerant quantum computing with color codes” (2011)
Andrew J. Landahl, Jonas T. Anderson, and Patrick R. Rice · 2011
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Austin G. Fowler · 2011
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Pradeep Sarvepalli and Robert Raussendorf · 2012
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Austin G. Fowler · 2012
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Héctor Bombín · 2013
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Austin G. Fowler, Simon J. Devitt, and Cody Jones · 2013
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Austin G. Fowler · 2013
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“Decoding color codes by projection onto surface codes”
Nicolas Delfosse · 2014
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“Logical error rate scaling of the toric code”
Fern H. E. Watson and Sean D. Barrett · 2014
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Pavithran Iyer and David Poulin · 2015
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Daniel Litinski · 2019
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Oscar Higgott · 2022
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“Efficient color code decoders in d ≥ 2 d\geq 2 dimensions from toric code decoders”
Aleksander Kubica and Nicolas Delfosse · 2023
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“New circuits and an open source decoder for the color code” (2023)
Craig Gidney and Cody Jones · 2023
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