Robust photon-mediated entangling gates between quantum dot spin qubits

Author/Creator ORCID

Date

2021-01-27

Department

Program

Citation of Original Publication

Warren, Ada et al.; Robust photon-mediated entangling gates between quantum dot spin qubits; Quantum Physics, 27 Jan, 2021; https://arxiv.org/abs/2101.11579

Rights

This item is likely protected under Title 17 of the U.S. Copyright Law. Unless on a Creative Commons license, for uses protected by Copyright Law, contact the copyright holder or the author.

Abstract

Significant experimental advances in single-electron silicon spin qubits have opened the possibility of realizing long-range entangling gates mediated by microwave photons. Recently proposed iSWAP gates, however, require tuning qubit energies into resonance and have limited fidelity due to charge noise. We present a novel photon-mediated cross-resonance gate that is consistent with realistic experimental capabilities and requires no resonant tuning. Furthermore, we propose gate sequences capable of suppressing errors due to quasistatic noise for both the cross-resonance and iSWAP gates.