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Achieving high-fidelity entangling operations between qubits consistently is essential for the performance of multi-qubit systems and is a crucial factor in achieving fault-tolerant quantum processors.
Quantum computation with quantum dots
Loss, D. & DiVincenzo, D. P · 1998
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Singlet-triplet spin blockade and charge sensing in a few-electron double quantum dot
Johnson, A. C., Petta, J. R., Marcus, C. M., Hanson, M. P. & Gossard, A. C · 2005
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Randomized benchmarking of quantum gates
Knill, E · 2008
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A silicon radio-frequency single electron transistor
Angus, S. J., Ferguson, A. J., Dzurak, A. S. & Clark, R. G · 2008
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Thresholds for topological codes in the presence of loss
Stace, T. M., Barrett, S. D. & Doherty, A. C · 2009
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Observation of the single-electron regime in a highly tunable silicon quantum dot
Lim, W. H · 2009
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Error correction and degeneracy in surface codes suffering loss
Stace, T. M. & Barrett, S. D · 2010
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Surface codes: Towards practical large-scale quantum computation
Fowler, A. G., Mariantoni, M., Martinis, J. M. & Cleland, A. N · 2012
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Efficient measurement of quantum gate error by interleaved randomized benchmarking
Magesan, E · 2012
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Veldhorst, M · 2014
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Veldhorst, M · 2015
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Introduction to quantum gate set tomography
Greenbaum, D · 2015
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Nonexponential fidelity decay in randomized benchmarking with low-frequency noise
Fogarty, M. A · 2015
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Fault-tolerance thresholds for the surface code with fabrication errors
Auger, J. M., Anwar, H., Gimeno-Segovia, M., Stace, T. M. & Browne, D. E · 2017
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A programmable two-qubit quantum processor in silicon
Watson, T. F · 2018
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Optimized electrical control of a Si/SiGe spin qubit in the presence of an induced frequency shift
Takeda, K · 2018
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Assessment of a silicon quantum dot spin qubit environment via noise spectroscopy
Chan, K. W · 2018
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Quantum supremacy using a programmable superconducting processor
Arute, F · 2019
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Tunable coupling and isolation of single electrons in silicon metal-oxide-semiconductor quantum dots
Eenink, H. G. J · 2019
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Analytically parametrized solutions for robust quantum control using smooth pulses
Güngördü, U. & Kestner, J. P · 2019
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Silicon qubit fidelities approaching incoherent noise limits via pulse engineering
Yang, C. H · 2019
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Quantum computational advantage using photons
Zhong, H.-S · 2020
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Operation of a silicon quantum processor unit cell above one kelvin
Yang, C. H · 2020
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Fast bayesian tomography of a two-qubit gate set in silicon
Evans, T · 2022
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A taxonomy of small markovian errors
Blume-Kohout, R · 2022
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Low charge noise quantum dots with industrial cmos manufacturing (2022)
Elsayed, A · 2022
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Robust quantum gates using smooth pulses and physics-informed neural networks
Güngördü, U. & Kestner, J. P · 2022
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Universal control of a six-qubit quantum processor in silicon
Philips, S. G. J · 2022
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Implementation of an advanced dressing protocol for global qubit control in silicon
Hansen, I · 2022
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Pulse engineering of a global field for robust and universal quantum computation
Hansen, I · 2021
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Acharya, R · 2023
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Foundry compatible 300 mm process flows for si spin and superconducting qubits
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