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The yield of physical qubits fabricated in the laboratory is much lower than that of classical transistors in production semiconductor fabrication.
A note on two problems in connexion with graphs
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Algorithms for quantum computation: Discrete logarithms and factoring
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John Preskill · 1998
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SB Bravyi and A.Y. Kitaev · 1998
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A.Y. Kitaev · 2003
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Mathematical Foundations of Computer Science 2003
Harry Buhrman and Hein Röhrig · 2003
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Implementation of the semiclassical quantum Fourier transform in a scalable system
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StarBED and SpringOS: Large-scale General Purpose Network Testbed and Supporting Software
Toshiyuki Miyachi, Ken-ichi Chinen, and Yoichi Shinoda · 2006
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Long-range coupling and scalable architecture for superconducting flux qubits
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K.M. Svore, D.P. DiVincenzo, and B.M. Terhal · 2007
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Fault-tolerant quantum computation with high threshold in two dimensions
Robert Raussendorf and Jim Harrington · 2007
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Topological fault-tolerance in cluster state quantum computation
Distributed quantum computation architecture using semiconductor nanophotonics
Rodney Van Meter, Thaddeus D. Ladd, Austin G. Fowler, and Yoshihisa Yamamoto · 2010
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Fault tolerant quantum computation with very high threshold for loss errors
Sean D. Barrett and Thomas M. Stace · 2010
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Nonlocality and communication complexity
Harry Buhrman, Richard Cleve, Serge Massar, and Ronald de Wolf · 2010
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Measurement-based and universal blind quantum computation
Anne Broadbent, Joseph Fitzsimons, and Elham Kashefi · 2010
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Fault-tolerant quantum computing with color codes
Andrew J. Landahl, Jonas T. Anderson, and Patrick R. Rice · 2011
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Scalable architecture for a room temperature solid-state quantum information processor
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Robert Raussendorf, Jim Harrington, and Kovid Goyal · 2007
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Thresholds for topological codes in the presence of loss
Thomas M. Stace, Sean D. Barrett, and Andrew C. Doherty · 2009
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Architectural design for a topological cluster state quantum computer
Simon J Devitt, Austin G Fowler, Ashley M Stephens, Andrew D Greentree, Lloyd C L Hollenberg, William J Munro, and Kae Nemoto · 2009
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A fault tolerant, area efficient architecture for shor’s factoring algorithm
Mark G. Whitney, Nemanja Isailovic, Yatish Patel, and John Kubiatowicz · 2009
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Fault-tolerant architectures for superconducting qubits
David P DiVincenzo · 2009
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Fault-tolerant computing with biased-noise superconducting qubits: a case study
P Aliferis, F Brito, D P DiVincenzo, J Preskill, M Steffen, and B M Terhal · 2009
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High-threshold universal quantum computation on the surface code
Austin G. Fowler, Ashley M. Stephens, and Peter Groszkowski · 2009
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Norman Y. Yao, Liang Jiang, Alexey V. Gorshkov, Peter C. Maurer, Geza Giedke, J. Ignacio Cirac, and Mikhail D. Lukin · 2012
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Layered architecture for quantum computing
N. Cody Jones, Rodney Van Meter, Austin G. Fowler, Peter L. McMahon, Jungsang Kim, Thaddeus D. Ladd, and Yoshihisa Yamamoto · 2012
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Surface code quantum computing by lattice surgery
Clare Horsman, Austin G Fowler, Simon Devitt, and Rodney Van Meter · 2012
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StarBED and SpringOS Architectures and Their Performance
Toshiyuki Miyachi, Takeshi Nakagawa, Ken-ichi Chinen, Shinsuke Miwa, and Yoichi Shinoda · 2012
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Topological code Autotune
A. Fowler, A. Whiteside, A. McInnes, and A. Rabbani · 2012
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A blueprint for building a quantum computer
Rodney Van Meter and Clare Horsman · 2013
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Quantum Error Correction
Daniel A. Lidar and Todd A. Brun, editors · 2013
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Large-scale modular quantum-computer architecture with atomic memory and photonic interconnects
C. Monroe, R. Raussendorf, A. Ruthven, K. R. Brown, P. Maunz, L.-M. Duan, and J. Kim · 2014
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Fault-tolerant operations for universal blind quantum computation, 2015
Chia-Hung Chien, Rodney Van Meter, and Sy-Yen Kuo · 2015
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