Cite this article:
Yao Li, Chuang Li, Jiandong Zhang, Ying Dong, Huizhu Hu. Tunable phonon–atom interaction in a hybrid optomechanical systemJ. Chin. Phys. B, 2023, 32(4): 044213.
| Yao Li, Chuang Li, Jiandong Zhang, Ying Dong, Huizhu Hu. Tunable phonon–atom interaction in a hybrid optomechanical systemJ. Chin. Phys. B, 2023, 32(4): 044213. |
Tunable phonon–atom interaction in a hybrid optomechanical system
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Abstract
We theoretically analyze a hybrid system consisting of a levitated neutral atom and a nanoparticle coupled to a cavity. The mechanical oscillator and the atom are effectively coupled to each other through the cavity photons as a bus. By adjusting the driving lasers, we can conveniently switch the phonon–atom coupling between Jaynes–Cummings (JC) and anti-JC forms, which can be used to manipulate the motional states of the mechanical oscillator. As an application, we prepare a superposition state of the mechanical oscillator via the effective phonon–atom interaction and investigate the effects of dissipation on the state generation. -
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