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Quantum information processors promise fast algorithms for problems inaccessible to classical computers.
Broadband, Narrowband, and Passband Composite Pulses for Use in Advanced NMR Experiments
Wimperis, S · 1994
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Prescription for experimental determination of the dynamics of a quantum black box
Chuang, I. L. & Nielsen, M · 1997
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Quantum circuits with mixed states
Aharonov, D., Kitaev, A. & Nisan, N · 1998
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Coherent control of macroscopic quantum states in a single-cooper-pair box
Nakamura, Y., Pashkin, Y. A. & Tsai, J · 1999
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SciPy: Open source scientific tools for Python (2001–)
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Experimental demonstration of a robust, high-fidelity geometric two ion-qubit phase gate
Leibfried, D. et al · 2003
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Demonstration of an all-optical quantum controlled-not gate
O’Brien, J. L., Pryde, G. J., White, A. G., Ralph, T. C. & Branning, D · 2003
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Strong coupling of a single photon to a superconducting qubit using circuit quantum electrodynamics
Wallraff, A. et al · 2004
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Deterministic quantum teleportation of atomic qubits
Barrett, M. et al · 2004
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Quantum process tomography of the quantum fourier transform
Weinstein, Y. S. et al · 2004
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Quantum process tomography of a controlled-not gate
O’Brien, J. L. et al · 2004
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Coherent manipulation of coupled electron spins in semiconductor quantum dots
Petta, J. R. et al · 2005
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Quantum computing with realistically noisy devices
Knill, E · 2005
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Measuring errors in single-qubit rotations by pulsed electron paramagnetic resonance
Morton, J. J. L. et al · 2005
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Quantum accuracy threshold for concatenated distance-3 codes
Aliferis, P., Gottesman, D. & Preskill, J · 2006
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Subsystem fault tolerance with the bacon-shor code
Aliferis, P. & Cross, A. W · 2007
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Symmetrized characterization of noisy quantum processes
Emerson, J. et al · 2007
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Manipulation and detection of a trapped yb + {\mathrm{yb}}^{+} hyperfine qubit
Olmschenk, S. et al · 2007
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Fault-tolerant quantum computation with constant error rate
Aharonov, D. & Ben-Or, M · 2008
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Randomized benchmarking of quantum gates
Knill, E. et al · 2008
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Shor’s quantum factoring algorithm on a photonic chip
Politi, A., Matthews, J. C. & O’Brien, J. L · 2009
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Fibonacci scheme for fault-tolerant quantum computation
Aliferis, P. & Preskill, J · 2009
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Fault-tolerant computing with biased-noise superconducting qubits: a case study
Aliferis, P. et al · 2009
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Dynamical quantum error correction of unitary operations with bounded controls
Khodjasteh, K. & Viola, L · 2009
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Quantum walks of correlated photons
Peruzzo, A. et al · 2010
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Demonstration of a microfabricated surface electrode ion trap
Stick, D. et al · 2010
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Computing the distance between quantum channels: usefulness of the fano representation
Benenti, G. & Strini, G · 2010
Superconducting quantum circuits at the surface code threshold for fault tolerance
Barends, R. et al · 2014
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A quantum gate between a flying optical photon and a single trapped atom
Reiserer, A., Kalb, N., Rempe, G. & Ritter, S · 2014
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High-fidelity preparation, gates, memory, and readout of a trapped-ion quantum bit
Harty, T. P. et al · 2014
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Robust extraction of tomographic information via randomized benchmarking
Kimmel, S., da Silva, M. P., Ryan, C. A., Johnson, B. R. & Ohki, T · 2014
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Progress in Compensating Pulse Sequences for Quantum Computation , 241–294 (John Wiley & Sons, Inc., 2014)
Merrill, J. T. & Brown, K. R · 2014
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Optimal quantum control using randomized benchmarking
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Cited alongside, same era.
14-qubit entanglement: Creation and coherence
Monz, T. et al · 2011
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Single-qubit-gate error below 10 − 4 10^{-}4 in a trapped ion
Brown, K. R. et al · 2011
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Gate fidelity fluctuations and quantum process invariants
Magesan, E., Blume-Kohout, R. & Emerson, J · 2011
Cited alongside, same era.
Demonstration of entanglement of electrostatically coupled singlet-triplet qubits
Shulman, M. D. et al · 2012
Cited alongside, same era.
Efficient measurement of quantum gate error by interleaved randomized benchmarking
Magesan, E. et al · 2012
Cited alongside, same era.
Demonstration of entanglement of electrostatically coupled singlet-triplet qubits
Shulman, M. D. et al · 2012
Cited alongside, same era.
Kelly, J. et al · 2014
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Randomized benchmarking with confidence
Wallman, J. J. & Flammia, S. T · 2014
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A two-qubit logic gate in silicon
Veldhorst, M. et al · 2015
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Error compensation of single-qubit gates in a surface-electrode ion trap using composite pulses
Mount, E. et al · 2015
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Estimating the coherence of noise
Wallman, J., Granade, C., Harper, R. & Flammia, S. T · 2015
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Introduction to quantum gate set tomography
Greenbaum, D · 2015
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Microwave-driven coherent operation of a semiconductor quantum dot charge qubit
Kim, D. et al · 2015
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Qubit metrology of ultralow phase noise using randomized benchmarking
O’Malley, P. J. J. et al · 2015
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Bounding experimental quantum error rates relative to fault-tolerant thresholds
Wallman, J. J · 2015
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Demonstration of a small programmable quantum computer with atomic qubits
Debnath, S. et al · 2016
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Bounding quantum gate error rate based on reported average fidelity
Sanders, Y. R., Wallman, J. J. & Sanders, B. C · 2016
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Comparing experiments to the fault-tolerance threshold
Kueng, R., Long, D. M., Doherty, A. C. & Flammia, S. T · 2016
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Effect of noise correlations on randomized benchmarking
Ball, H., Stace, T. M., Flammia, S. T. & Biercuk, M. J · 2016
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Noise tailoring for scalable quantum computation via randomized compiling
Wallman, J. J. & Emerson, J · 2016
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pyGSTi: A python implementation of gate set tomography (2016)
Nielsen, E., Rudinger, K., Gamble, J. K. & Blume-Kohout, R · 2016
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