Kristan Temme, Sergey Bravyi, et al.
Physical Review Letters
We use quantum process tomography to characterize a full universal set of all-microwave gates on two superconducting single-frequency single-junction transmon qubits. All extracted gate fidelities, including those for Clifford group generators, single-qubit π/4 and π/8 rotations, and a two-qubit controlled-not, exceed 95% (98%), without (with) subtracting state preparation and measurement errors. Furthermore, we introduce a process map representation in the Pauli basis which is visually efficient and informative. This high-fidelity gate set serves as a critical building block towards scalable architectures of superconducting qubits for error correction schemes and pushes up on the known limits of quantum gate characterization. © 2012 American Physical Society.
Kristan Temme, Sergey Bravyi, et al.
Physical Review Letters
Nikolaj Moll, Panagiotis Kl. Barkoutsos, et al.
Quantum Science and Technology
Shaohan Hu, Dmitri Maslov, et al.
DAC 2019
Antonio D. Córcoles, Jay M. Gambetta, et al.
Physical Review A - AMO