Fetching the paper…
Reading the bibliography…
We show that the Randomized Benchmarking (RB) protocol is a convolution amenable to Fourier space analysis.
Scalable noise estimation with random unitary operators
Joseph Emerson, Robert Alicki, and Karol Życzkowski · 2005
Earlier work this paper cites.
Efficient error characterization in quantum information processing
Benjamin Lévi, Cecilia C. López, Joseph Emerson, and D. G. Cory · 2007
Earlier work this paper cites.
Randomized benchmarking of quantum gates
E. Knill, D. Leibfried, R. Reichle, J. Britton, R. B. Blakestad, J. D. Jost, C. Langer, R. Ozeri, S. Seidelin, and D. J. Wineland · 2008
Earlier work this paper cites.
Randomized benchmarking and process tomography for gate errors in a solid-state qubit
J. M. Chow, J. M. Gambetta, L. Tornberg, Jens Koch, Lev S. Bishop, A. A. Houck, B. R. Johnson, L. Frunzio, S. M. Girvin, and R. J. Schoelkopf · 2009
Earlier work this paper cites.
Exact and approximate unitary 2-designs and their application to fidelity estimation
Christoph Dankert, Richard Cleve, Joseph Emerson, and Etera Livine · 2009
Earlier work this paper cites.
Randomized benchmarking of single- and multi-qubit control in liquid-state NMR quantum information processing
C A Ryan, M Laforest, and R Laflamme · 2009
Earlier work this paper cites.
Randomized benchmarking of atomic qubits in an optical lattice
S Olmschenk, R Chicireanu, K D Nelson, and J V Porto · 2010
Earlier work this paper cites.
Scalable and robust randomized benchmarking of quantum processes
Easwar Magesan, J. M. Gambetta, and Joseph Emerson · 2011
Earlier work this paper cites.
Randomized benchmarking of multiqubit gates
J. P. Gaebler, A. M. Meier, T. R. Tan, R. Bowler, Y. Lin, D. Hanneke, J. D. Jost, J. P. Home, E. Knill, D. Leibfried, and D. J. Wineland · 2012
Earlier work this paper cites.
Characterization of addressability by simultaneous randomized benchmarking
Jay M. Gambetta, A. D. Córcoles, S. T. Merkel, B. R. Johnson, John A. Smolin, Jerry M. Chow, Colm A. Ryan, Chad Rigetti, S. Poletto, Thomas A. Ohki, Mark B. Ketchen, and M. Steffen · 2012
Earlier work this paper cites.
Hyperfine-induced decay in triple quantum dots
Thaddeus D. Ladd · 2012
Earlier work this paper cites.
Process verification of two-qubit quantum gates by randomized benchmarking
A. D. Córcoles, Jay M. Gambetta, Jerry M. Chow, John A. Smolin, Matthew Ware, Joel Strand, B. L. T. Plourde, and M. Steffen · 2013
Cited alongside, same era.
Superconducting quantum circuits at the surface code threshold for fault tolerance
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 · 2014
Cited alongside, same era.
Investigating the limits of randomized benchmarking protocols
Jeffrey M. Epstein, Andrew W. Cross, Easwar Magesan, and Jay M. Gambetta · 2014
Cited alongside, same era.
An addressable quantum dot qubit with fault-tolerant control-fidelity
M. Veldhorst, J. C. C. Hwang, C. H. Yang, A. W. Leenstra, B. de Ronde, J. P. Dehollain, J. T. Muhonen, F. E. Hudson, K. M. Itoh, A. Morello, and A. S. Dzurak · 2014
Cited alongside, same era.
Characterizing universal gate sets via dihedral benchmarking
Arnaud Carignan-Dugas, Joel J. Wallman, and Joseph Emerson · 2015
Scalable randomised benchmarking of non-Clifford gates
Andrew W Cross, Easwar Magesan, Lev S Bishop, John A Smolin, and Jay M Gambetta · 2016
Later among the works it cites.
High-fidelity universal gate set for Be + 9 {{}^{9}\mathrm{Be}}^{+} ion qubits
J. P. Gaebler, T. R. Tan, Y. Lin, Y. Wan, R. Bowler, A. C. Keith, S. Glancy, K. Coakley, E. Knill, D. Leibfried, and D. J. Wineland · 2016
Later among the works it cites.
Robust characterization of leakage errors
Joel J. Wallman, Marie Barnhill, and Joseph Emerson · 2016
Later among the works it cites.
Randomized benchmarking, correlated noise, and Ising models
B. H. Fong and S. T. Merkel · 2017
Later among the works it cites.
Inverse and stability theorems for approximate representations of finite groups
W. T. Gowers and O. Hatami · 2017
Later among the works it cites.
alphaXiv searches the wider corpus for related work and actual follow-ups.
alphaXiv is searching for related work…
Cited alongside, same era.
Complete randomized benchmarking protocol accounting for leakage errors
T. Chasseur and F. K. Wilhelm · 2015
Cited alongside, same era.
Nonexponential fidelity decay in randomized benchmarking with low-frequency noise
M. A. Fogarty, M. Veldhorst, R. Harper, C. H. Yang, S. D. Bartlett, S. T. Flammia, and A. S. Dzurak · 2015
Cited alongside, same era.
Approximate representations, approximate homomorphisms, and low-dimensional embeddings of groups
Cristopher Moore and Alexander Russell · 2015
Cited alongside, same era.
Estimating the coherence of noise
Joel J. Wallman, Chris Granade, Robin Harper, and Steven T Flammia · 2015
Cited alongside, same era.
Randomized benchmarking of single-qubit gates in a 2d array of neutral-atom qubits
T. Xia, M. Lichtman, K. Maller, A. W. Carr, M. J. Piotrowicz, L. Isenhower, and M. Saffman · 2015
Cited alongside, same era.
High-fidelity quantum logic gates using trapped-ion hyperfine qubits
C. J. Ballance, T. P. Harty, N. M. Linke, M. A. Sepiol, and D. M. Lucas · 2016
Cited alongside, same era.
Supplementary Mathematica notebook included as ancillary file of this arxiv submission
Cited in the paper.
Timothy Proctor, Kenneth Rudinger, Kevin Young, Mohan Sarovar, and Robin Blume-Kohout · 2017
Later among the works it cites.
URL https://www.gap-system.org
The GAP Group, GAP — Groups, Algorithms, and Programming, version 4.10.0, 2018 · 2018
Closest in time.
From randomized benchmarking experiments to gate-set circuit fidelity: how to interpret randomized benchmarking decay parameters
Arnaud Carignan-Dugas, Kristine Boone, Joel J. Wallman, and Joseph Emerson · 2018
Closest in time.
Randomized benchmarking with gate-dependent noise
Joel J. Wallman · 2018
Closest in time.
Quantification and characterization of leakage errors
Christopher J. Wood and Jay M. Gambetta · 2018
Closest in time.
Comparing the randomized benchmarking figure with the average infidelity of a quantum gate-set
Jiaan Qi and Hui Khoon Ng · 2019
Closest in time.