DOE OSTI · 1870503
Two-qubit silicon quantum processor with operation fidelity exceeding 99%
Abstract
Silicon spin qubits satisfy the necessary criteria for quantum information processing. However, a demonstration of high-fidelity state preparation and readout combined with high-fidelity single- and two-qubit gates, all of which must be present for quantum error correction, has been lacking. We use a two-qubit Si/SiGe quantum processor to demonstrate state preparation and readout with fidelity greater than 97%, combined with both single- and two-qubit control fidelities exceeding 99%. The operation of the quantum processor is quantitatively characterized using gate set tomography and randomized benchmarking. Finally, our results highlight the potential of silicon spin qubits to become a dominant technology in the development of intermediate-scale quantum processors.
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Mills, Adam R., Guinn, Charles R., Gullans, Michael J., Sigillito, Anthony J., Feldman, Mayer M., Nielsen, Erik, Petta, Jason R.. 2022-04-06. Two-qubit silicon quantum processor with operation fidelity exceeding 99%. https://doi.org/10.1126/sciadv.abn5130
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