Impact of qubit anharmonicity on near-resonant Rabi oscillations
Abstract
Precise quantum control relies on a deep understanding of the dynamics of quantum systems under external drives. This study investigates the impact of anharmonicity on qubit dynamics under conditions typical for two-qubit entangling gates activated by weak near-resonant microwave drives. We measure the Rabi oscillation frequency as a function of drive amplitude and detuning. Our results reveal a linear dependence of the squared Rabi frequency on the squared drive amplitude, which relates to the ratio of detuning to anharmonicity, demonstrating strong agreement between experimental data and analytical predictions. Additionally, we analyze the leakage and phase errors arising from inaccurate Rabi frequency adjustments in the CZ gate implementation on fluxonium qubits driven by a microwave signal applied to the coupler [Simakov et al., PRX Quantum 4, 040321 (2023)].
Article Details
Journal Info
Applied Physics Letters
American Institute of Physics
Authors (5)
Grigoriy S. Mazhorin
National University of Science and Technology “MISIS,” 1 119049 Moscow,
Andrei A. Kugut
National University of Science and Technology “MISIS,” 1 119049 Moscow,
Artyom M. Polyanskiy
Russian Quantum Center 1 , Skolkovo, Moscow 121205,
Ilya N. Moskalenko
National University of Science and Technology “MISIS,” 1 119049 Moscow,
Ilya A. Simakov
Russian Quantum Center 1 , Skolkovo, Moscow 121205,