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Calibration of the cross-resonance two-qubit gate between directly-coupled transmons

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arxiv 1905.05670 v1 pith:FRIETJZC submitted 2019-05-14 quant-ph

classification quant-ph
keywords gatequantumcontrolcalibrationcross-resonanceprocedurequbitstwo-qubit
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

Quantum computation requires the precise control of the evolution of a quantum system, typically through application of discrete quantum logic gates on a set of qubits. Here, we use the cross-resonance interaction to implement a gate between two superconducting transmon qubits with a direct static dispersive coupling. We demonstrate a practical calibration procedure for the optimization of the gate, combining continuous and repeated-gate Hamiltonian tomography with step-wise reduction of dominant two-qubit coherent errors through mapping to microwave control parameters. We show experimentally that this procedure can enable a $\hat{ZX}_{-\pi/2}$ gate with a fidelity $F=97.0(7)\%$, measured with interleaved randomized benchmarking. We show this in a architecture with out-of-plane control and readout that is readily extensible to larger scale quantum circuits.

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