Topological quantum computing (QC) is a way of allowing precise quantum computations to run on noisy and imperfect hardware. One implementation uses surface codes created by forming defects in a highly-entangled cluster state. Such a method of computing is a leading candidate for large-scale QC. However, there has been a lack of sufficiently powerful high-level languages to describe computing in this form without resorting to single-qubit operations, which quickly become prohibitively complex as the system size increases. In this paper, we apply the category-theoretic work of Abramsky and Coecke to the topological cluster-state model of QC to give a high-level graphical language that enables direct translation between quantum processes and physical patterns of measurement in a computer-a 'compiler language'. We give the equivalence between the graphical and topological information flows, and show the applicable rewrite algebra for this computing model. We show that this gives us a native graphical language for the design and analysis of topological quantum algorithms, and finish by discussing the possibilities for automating this process on a large scale.
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Univ London Imperial Coll Sci Technol & Med, Inst Math Sci, London SW7 2BW, EnglandUniv London Imperial Coll Sci Technol & Med, Inst Math Sci, London SW7 2BW, England
Herrera-Marti, David A.
Fowler, Austin G.
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Univ Melbourne, Ctr Quantum Comp Technol, Melbourne, Vic 3010, AustraliaUniv London Imperial Coll Sci Technol & Med, Inst Math Sci, London SW7 2BW, England
Fowler, Austin G.
Jennings, David
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Univ London Imperial Coll Sci Technol & Med, Inst Math Sci, London SW7 2BW, EnglandUniv London Imperial Coll Sci Technol & Med, Inst Math Sci, London SW7 2BW, England
Jennings, David
Rudolph, Terry
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Univ London Imperial Coll Sci Technol & Med, Inst Math Sci, London SW7 2BW, EnglandUniv London Imperial Coll Sci Technol & Med, Inst Math Sci, London SW7 2BW, England
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Hefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, HefeiHefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, Hefei
Gao W.-B.
Yao X.-C.
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Hefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, HefeiHefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, Hefei
Yao X.-C.
Cai J.-M.
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Institut für Quantenoptik und Quanteninformation, Österreichische Akademie der Wissenschaften, A-6020 Innsbruck
Institut für theoretische Physik, Universität Innsbruck, A-6020 InnsbruckHefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, Hefei
Cai J.-M.
Lu H.
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Hefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, HefeiHefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, Hefei
Lu H.
Xu P.
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Hefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, HefeiHefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, Hefei
Xu P.
Yang T.
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Hefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, HefeiHefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, Hefei
Yang T.
Lu C.-Y.
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Hefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, HefeiHefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, Hefei
Lu C.-Y.
Chen Y.-A.
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Hefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, HefeiHefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, Hefei
Chen Y.-A.
Chen Z.-B.
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Hefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, HefeiHefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, Hefei
Chen Z.-B.
Pan J.-W.
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Hefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, Hefei
Physikalisches Institut, Ruprecht-Karls-Universität Heidelberg, 69120 HeidelbergHefei National Laboratory for Physical Sciences at Microscale, Department of Modern Physics, University of Science and Technology of China, Hefei