A symmetry-protected topological optical lattice clock
A symmetry-protected topological optical lattice clock
We theoretically propose a tunable implementation of symmetry-protected topological phases in a synthetic superlattice, taking advantage of the long coherence time and exquisite spectral resolutions offered by gravity-tilted optical lattice clocks. We describe a protocol similar to Rabi spectroscopy that can be used to probe the distinct topological properties of our system. We then demonstrate how the sensitivity of clocks and interferometers can be improved by the protection to unwanted experimental imperfections offered by the underlying topological robustness. The proposed implementation opens a path to exploit the unique opportunities offered by symmetry-protected topological phases in state-of-the-art quantum sensors.
Tianrui Xu、Anjun Chu、Kyungtae Kim、James K. Thompson、Jun Ye、Tilman Esslinger、Ana Maria Rey
物理学
Tianrui Xu,Anjun Chu,Kyungtae Kim,James K. Thompson,Jun Ye,Tilman Esslinger,Ana Maria Rey.A symmetry-protected topological optical lattice clock[EB/OL].(2025-07-02)[2025-08-02].https://arxiv.org/abs/2501.09658.点此复制
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