Fast, high-fidelity readout of multiple qubits
Nicholas T. Bronn, Baleegh Abdo, et al.
WOLTE 2016
We improve the quality of quantum circuits on superconducting quantum computing systems, as measured by the quantum volume (QV), with a combination of dynamical decoupling, compiler optimizations, shorter two-qubit gates, and excited state promoted readout. This result shows that the path to larger QV systems requires the simultaneous increase of coherence, control gate fidelities, measurement fidelities, and smarter software which takes into account hardware details, thereby demonstrating the need to continue to co-design the software and hardware stack for the foreseeable future.
Nicholas T. Bronn, Baleegh Abdo, et al.
WOLTE 2016
John M. Papalia, Devi Koty, et al.
SPIE Advanced Lithography 2022
Ted Thorbeck, Andrew Eddins, et al.
APS March Meeting 2022
Dennis Wang, Priti Shah, et al.
APS March Meeting 2021