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Efficient flexible characterization of quantum processors with nested error models
by
Rudinger, Kenneth
, Blume-Kohout, Robin
, Proctor, Timothy
, Young, Kevin
, Nielsen, Erik
in
Circuits
/ CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS
/ Errors
/ Experiments
/ Laboratories
/ Microprocessors
/ model selection
/ Physics
/ Protocol
/ QCVV
/ quantum characterization
/ Qubits (quantum computing)
2021
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Efficient flexible characterization of quantum processors with nested error models
by
Rudinger, Kenneth
, Blume-Kohout, Robin
, Proctor, Timothy
, Young, Kevin
, Nielsen, Erik
in
Circuits
/ CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS
/ Errors
/ Experiments
/ Laboratories
/ Microprocessors
/ model selection
/ Physics
/ Protocol
/ QCVV
/ quantum characterization
/ Qubits (quantum computing)
2021
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Do you wish to request the book?
Efficient flexible characterization of quantum processors with nested error models
by
Rudinger, Kenneth
, Blume-Kohout, Robin
, Proctor, Timothy
, Young, Kevin
, Nielsen, Erik
in
Circuits
/ CLASSICAL AND QUANTUM MECHANICS, GENERAL PHYSICS
/ Errors
/ Experiments
/ Laboratories
/ Microprocessors
/ model selection
/ Physics
/ Protocol
/ QCVV
/ quantum characterization
/ Qubits (quantum computing)
2021
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Efficient flexible characterization of quantum processors with nested error models
Journal Article
Efficient flexible characterization of quantum processors with nested error models
2021
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Overview
We present a simple and powerful technique for finding a good error model for a quantum processor. The technique iteratively tests a nested sequence of models against data obtained from the processor, and keeps track of the best-fit model and its wildcard error (a metric of the amount of unmodeled error) at each step. Each best-fit model, along with a quantification of its unmodeled error, constitutes a characterization of the processor. We explain how quantum processor models can be compared with experimental data and to each other. We demonstrate the technique by using it to characterize a simulated noisy two-qubit processor.
Publisher
IOP Publishing
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