Publication | Closed Access
Vector cavity optomechanics in the parameter configuration of optomechanically induced transparency
49
Citations
34
References
2016
Year
EngineeringWave OpticVector Cavity OptomechanicsInduced TransparencyOptic DesignOptomechanical SystemOptomechanicsMicro-optical ComponentOptical PropertiesGuided-wave OpticLevitated OptomechanicsPhotonicsOphthalmologyPhysicsVector RegimePolarization BehaviorCavity OptomechanicsBiophotonicsParameter ConfigurationApplied PhysicsOptoelectronics
We propose the concept of vector cavity optomechanics in which the polarization behavior of light fields is introduced to achieve optomechanical control. The steady states and optomechanically induced transparency are studied in the vector regime, and we show that the polarization of optical fields may be a powerful tool to identify the underlying physical process and control the signal of optomechanically induced transparency. In particular, the conditions for obtaining a linearly polarized output probe field is given, which reveal some nontrivial polarizing effects. Despite its conceptual simplicity, vector cavity optomechanics may entail a wide range of intriguing phenomena and uncover a novel understanding for optomechanical interaction.
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