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Quantum synchronization of two mechanical oscillators in coupled optomechanical systems with Kerr nonlinearity

机译:具有Kerr非线性的耦合光机械系统中两个机械振荡器的量子同步

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We investigate the quantum synchronization phenomena of two mechanical oscillators of different frequencies in two optomechanical systems under periodically modulating cavity detunings or driving amplitudes, which can interact mutually through an optical fiber or a phonon tunneling. The cavities are filled with Kerr-type nonlinear medium. It is found that, no matter which the coupling and periodically modulation we choose, both of the quantum synchronization of nonlinear optomechanical system are more appealing than the linear optomechanical system. It is easier to observe greatly enhanced quantum synchronization with Kerr nonlinearity. In addition, the different influences on the quantum synchronization between the two coupling ways and the two modulating ways are compared and discussed.
机译:我们研究了两个光机械系统中不同频率的两个机械振荡器在周期性调制腔失谐或驱动振幅下的量子同步现象,该失谐或驱动振幅可通过光纤或声子隧穿相互影响。空腔中充满了Kerr型非线性介质。结果发现,无论选择哪种耦合方式和周期性调制方式,非线性光机械系统的量子同步都比线性光机械系统更具吸引力。观察到Kerr非线性大大增强了量子同步,这一点比较容易。另外,比较和讨论了两种耦合方式和两种调制方式对量子同步的不同影响。

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