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Randomized benchmarking (RB) is an important protocol for robustly characterizing the error rates of quantum gates.
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Shelby Kimmel, Marcus P. da Silva, Colm a. Ryan, Blake R. Johnson, and Thomas Ohki, “Robust Extraction of Tomographic Information via Randomized Benchmarking,” Phys. Rev. X 4
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Christopher Granade, Christopher Ferrie, and D G Cory, “Accelerated randomized benchmarking,” New Journal of Physics 17
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R. Barends, J. Kelly, A. Megrant, A. Veitia, D. Sank, E. Jeffrey, T. C. White, J. Mutus, A. G. Fowler, B. Campbell, Y. Chen, Z. Chen, B. Chiaro, A. Dunsworth, C. Neill, P. O/’Malley, P. Roushan, A. Vainsencher, J. Wenner, A. N. Korotkov, A. N. Cleland, and John M. Martinis, “Superconducting quantum circuits at the surface code threshold for fault tolerance,” Nature 508
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Joel J Wallman and Steven T Flammia, “Randomized benchmarking with confidence,” New J. Phys. 16
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Jeffrey M. Epstein, Andrew W. Cross, Easwar Magesan, and Jay M. Gambetta, “Investigating the limits of randomized benchmarking protocols,” Phys. Rev. A 89
2014
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Arnaud Carignan-Dugas, Joel J. Wallman, and Joseph Emerson, “Characterizing universal gate sets via dihedral benchmarking,” Phys. Rev. A 92
2015
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2015
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Easwar Magesan, Jay M. Gambetta, B. R. Johnson, Colm A. Ryan, Jerry M. Chow, Seth T. Merkel, Marcus P. da Silva, George A. Keefe, Mary B. Rothwell, Thomas A. Ohki, Mark B. Ketchen, and M. Steffen, “Efficient measurement of quantum gate error by interleaved randomized benchmarking,” Phys. Rev. Lett. 109
Cited in the paper.
Joel Wallman, Chris Granade, Robin Harper, and Steven T Flammia, “Estimating the coherence of noise,” New Journal of Physics 17
Cited in the paper.
Cited in the paper.
2016
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2016
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Harrison Ball, Thomas M. Stace, Steven T. Flammia, and Michael J. Biercuk, “Effect of noise correlations on randomized benchmarking,” Phys. Rev. A 93
2016
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