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Self-Consistent Quantum Process Tomography

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arxiv 1211.0322 v1 pith:WPX334PX submitted 2012-11-01 quant-ph

Self-Consistent Quantum Process Tomography

classification quant-ph
keywords tomographygatesquantumprocessfunctionmeasurementself-consistentused
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Quantum process tomography is a necessary tool for verifying quantum gates and diagnosing faults in architectures and gate design. We show that the standard approach of process tomography is grossly inaccurate in the case where the states and measurement operators used to interrogate the system are generated by gates that have some systematic error, a situation all but unavoidable in any practical setting. These errors in tomography can not be fully corrected through oversampling or by performing a larger set of experiments. We present an alternative method for tomography to reconstruct an entire library of gates in a self-consistent manner. The essential ingredient is to define a likelihood function that assumes nothing about the gates used for preparation and measurement. In order to make the resulting optimization tractable we linearize about the target, a reasonable approximation when benchmarking a quantum computer as opposed to probing a black-box function.

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Cited by 2 Pith papers

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  2. Clifford Volume and Free Fermion Volume: Complementary Scalable Benchmarks for Quantum Computers

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    Two new classically verifiable benchmark scores, Clifford Volume and Free Fermion Volume, are defined, simulated under noise, and Clifford Volume is measured on the Quantinuum H2-1 device as 34 qubits.