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- Title
Auxiliary-Cavity-Assisted Slow and Fast Light in a Photonic Molecule Spinning Optomechanical System.
- Authors
Chen, Hua-Jun; Liu, Yun-He; Xie, Bao-Hao
- Abstract
We investigate the coherent optical propagation in a photonic molecule spinning optomechanical system consisting of two whispering gallery microcavities in which one of the optical cavities is a spinning optomechanical cavity and the other one is an ordinary auxiliary optical cavity. As the optomechanical cavity is spinning along the clockwise or counterclockwise direction, the cavity field can undergo different Sagnac effects, which accompanies the auxiliary optical cavity, together influencing the process of the evolution of optomechanically induced transparency and its related propagation properties, such as fast and slow light effects. The numerical results indicate that the enhanced slow and fast light and the conversion from fast to slow light (or slow to fast light) are determined by the spinning direction of the optomechanical cavity and the coupling of the two optical cavities. The study affords further insight into the photonic molecule spinning optomechanical systems and also indicates promising applications in quantum information processing.
- Subjects
OPTICAL resonators; WHISPERING gallery modes; SAGNAC effect; LIGHT propagation; QUANTUM information science; ELECTRON spin states; MOLECULES
- Publication
Micromachines, 2023, Vol 14, Issue 3, p655
- ISSN
2072-666X
- Publication type
Article
- DOI
10.3390/mi14030655