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Tunable second-order sideband effects in hybrid optomechanical cavity assisted with a Bose-Einstein condensate
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作者 Li-Wei Liu Chun-Guang Du +4 位作者 guo-heng zhang Qiong Chen Yu-Qing Shi Pei-Yu Wang Yu-Qing zhang 《Chinese Physics B》 SCIE EI CAS CSCD 2022年第10期389-398,共10页
We theoretically investigated a second-order optomechanical-induced transparency(OMIT) process of a hybrid optomechanical system(COMS), which a Bose-Einstein condensate(BEC) in the presence of atom-atom interaction tr... We theoretically investigated a second-order optomechanical-induced transparency(OMIT) process of a hybrid optomechanical system(COMS), which a Bose-Einstein condensate(BEC) in the presence of atom-atom interaction trapped inside a cavity with a moving end mirror. The advantage of this hybrid COMS over a bare COMS is that the frequency of the second mode is controlled by the s-wave scattering interaction. Based on the traditional linearization approximation, we derive analytical solutions for the output transmission intensity of the probe field and the dimensionless amplitude of the second-order sideband(SS). The numerical results show that the transmission intensity of the probe field and the dimensionless amplitude of the SS can be controlled by the s-wave scattering frequency. Furthermore, the control field intensities,the effective detuning, the effective coupling strength of the cavity field with the Bogoliubov mode are used to control the transmission intensity of the probe field and the dimensionless amplitude of the SS. 展开更多
关键词 second-order sideband Bose-Einstein condensate cavity optomechanical
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