Suppression of Unwanted Interactions in a Hybrid Two-Qubit System
arXiv:2003.02775 · doi:10.1103/PhysRevLett.125.200504
Abstract
Mitigating crosstalk errors, whether classical or quantum mechanical, is critically important for achieving high-fidelity entangling gates in multi-qubit circuits. For weakly anharmonic superconducting qubits, unwanted interactions can be suppressed by combining qubits with opposite anharmonicity. We present experimental measurements and theoretical modeling of two-qubit gate error for gates based on the cross resonance interaction between a capacitively shunted flux qubit and a transmon and demonstrate the elimination of the interaction.
5+16 pages, 5+13 figures, corrected typos, hyperlinking fixed, modified sections in supplement