arXiv · 2207.13447
Robustness of a universal gate set implementation in transmon systems via Chopped Random Basis optimal control
Abstract
We numerically study the implementation of a universal two-qubit gate set, composed of CNOT, Hadamard, phase and $\pi/8$ gates, for transmon-based systems. The control signals to implement such gates are obtained using the Chopped Random Basis optimal control technique, with a target gate infidelity of $10^{-2}$. During the optimization processes we account for the leakage toward non-computational states, an important non-ideality affecting transmon qubits. We also test and benchmark the optimal control solutions against the introduction of Gaussian white noise and spectral distortion, two key non-idealities that affect the control signals in transmon systems.
Explore related subjects
Keep this discovery
Hervè Atsè Corti, Leonardo Banchi, Alessandro Cidronali. 2022-07-27. Robustness of a universal gate set implementation in transmon systems via Chopped Random Basis optimal control. https://doi.org/10.1016/j.physleta.2022.128119
Cite the original work for its findings. Save a collection to share your selection of sources.