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Quantum-criticality-induced strong Kerr nonlinearities in optomechanical systems

机译:力学系统中量子临界诱导的强Kerr非线性

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We investigate a hybrid electro-optomechanical system that allows us to realize controllable strong Kerr nonlinearities even in the weak-coupling regime. We show that when the controllable electromechanical subsystem is close to its quantum critical point, strong photon-photon interactions can be generated by adjusting the intensity (or frequency) of the microwave driving field. Nonlinear optical phenomena, such as the appearance of the photon blockade and the generation of nonclassical states (e.g., Schr?dinger cat states), are demonstrated in the weak-coupling regime, making the observation of strong Kerr nonlinearities feasible with currently available optomechanical technology.
机译:我们研究了一种混合电光系统,该系统即使在弱耦合状态下也可以实现可控的强Kerr非线性。我们表明,当可控机电子系统接近其量子临界点时,可以通过调节微波驱动场的强度(或频率)来​​产生强光子-光子相互作用。在弱耦合机制中证明了非线性光学现象,例如光子阻滞的出现和非经典状态(例如,薛定cat猫状态)的产生,这使得使用现有的光机械技术观察强的Kerr非线性成为可能。

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