Hybrid qubit-oscillator module from motional states of two interacting atoms
arXiv:2512.06429 · doi:10.1103/2c4d-h5rc
Abstract
We propose a qubit-oscillator platform based on the motional states of two interacting atoms in an optical tweezer. By stroboscopically modulating an engineered trap with tunable anharmonicity, we implement a complete set of bosonic operations and their qubit-controlled counterparts with high fidelity. This motional control enables accurate detection of magnetic dipolar interactions with Hz sensitivity in one second, reaching sub-Hz resolution within a few minutes in a tweezer array under realistic experimental imperfections. Our approach establishes a versatile platform for motional quantum control of two atoms, with applications to spin-boson physics and precision sensing of interaction potentials and trapping environments.