School of Physics, Huazhong University of Science and Technology, Wuhan, 430074, People's Republic of China.
Sci Rep. 2018 Jan 18;8(1):1060. doi: 10.1038/s41598-018-19556-y.
Second-order sideband generation in an optomechanical system with the coupling between a mechanical resonator and a two-level system is discussed beyond the conventional linearized description of optomechanical interactions. The features of two-color second-order sideband generation are demonstrated in this hybrid system. We discovery that the switch between one- and two-color second-order sideband generation is easily realized by shifting the detuning between the control field and the cavity field or the transition frequency of the two-level system. The efficiency of two-color second-order sideband generation increases monotonously with the control field strength. The coupling strength between the mechanical resonator and the two-level system plays a decisive role in the appearance of the two-color second-order sidebands. The two-color second-order sideband generation may provide measurement with higher precision in new degrees of freedom.
本文超越了传统的光机械相互作用线性化描述,讨论了机械谐振器与双能级系统之间的耦合的光机械系统中的二阶边带产生。在这个混合系统中展示了双色二阶边带产生的特点。我们发现,通过移动控制场与腔场之间的失谐或双能级系统的跃迁频率,很容易实现从单-双色二阶边带产生的切换。双色二阶边带产生的效率随着控制场强度单调增加。机械谐振器与双能级系统之间的耦合强度在双色二阶边带的出现中起着决定性的作用。双色二阶边带产生可能为新自由度的测量提供更高的精度。