期刊
CHINESE PHYSICS B
卷 30, 期 10, 页码 -出版社
IOP Publishing Ltd
DOI: 10.1088/1674-1056/ac1924
关键词
ideal optomechanically induced transparency; cavity optoelectromechanical system; transparency window width
资金
- Natural Science Foundation of Guangxi Province, China [2018GXNSFBA281003, 2019GXNSFAA245034, AD19245180]
- Science Fund of Tonghua Normal University [202017ND]
Investigation of ideal optomechanically induced transparency effects in a cavity optoelectromechanical system, with control of transparency dip location via Coulomb coupling strength, and relationship between transparency window width, maximum dispersion curve slope, and optical cavity decay rate.
The ideal optomechanically induced transparency effects of an output probe field are investigated in a cavity optoelectromechanical system, which is composed of an optical cavity, a charged mechanical resonator, and a charged object. Although the charged mechanical resonator damping rate is nonzero, the ideal optomechanically induced transparency can still appear due to the non-rotating wave approximation effect in the system. The location of optomechanically induced transparency dip can be controlled via the Coulomb coupling strength. In addition, we find that both the transparency window width and the maximum dispersion curve slope are closely related to the optical cavity decay rate.
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