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Tunable phonon blockade in quadratically coupled optomechanical systems

机译:二次耦合光机械系统中的可调声子阻挡

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We theoretically investigate the phonon statistics of a quadratically coupled optomechanical system, in which an effective second-order nonlinear interaction between an optical mode and a mechanical mode is induced by a strong optical driving field on two-phonon red-sideband resonance. We show that strong phonon antibunching can be observed even if the strength of the effective second-order nonlinear interaction is much weaker than the decay rates of the system, by driving the optical and mechanical modes with weak driving fields respectively. Moreover, the phonon statistics can be dynamically controlled by tuning the strengths and the phase difference of the weak driving fields. The scheme proposed here can be used to realize tunable single-phonon sources with quadratically optomechanical coupling.
机译:我们从理论上研究了二次耦合光机械系统的声子统计,在该系统中,光模式和机械模式之间的有效二阶非线性相互作用是由两声子红边带共振上的强光驱动场引起的。我们表明,即使有效的二阶非线性相互作用的强度比系统的衰减率弱得多,也可以通过分别用弱驱动场驱动光学和机械模式来观察到强声子反聚束。此外,可以通过调节弱驱动场的强度和相位差来动态控制声子统计。本文提出的方案可用于实现二次光机耦合的可调谐单声子源。

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