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Interference control of nonlinear excitation in a multi-atom cavity quantum electrodynamics system

机译:多原子腔量子电动力学系统中非线性激发的干扰控制

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摘要

We show that by manipulating quantum interference in a multi-atom cavity quantum electrodynamics (CQED) system, the nonlinear excitation of the cavity-atom polariton can be resonantly enhanced while the linear excitation is suppressed. Under the appropriate conditions, it is possible to selectively enhance or suppress the polariton excitation with two free-pace laser fields. We report on an experiment with cold Rb atoms in an optical cavity and present experimental results that demonstrate such interference control of the CQED excitation and its direct application to studies of all-optical switching and cross-phase modulation of the cavity-transmitted light. (C) 2014 Optical Society of America
机译:我们表明,通过在多原子腔量子电动力学(CQED)系统中操纵量子干扰,可以共振地增强腔原子极化子的非线性激发,同时抑制线性激发。在适当的条件下,可以用两个自由速度的激光场有选择地增强或抑制极化子激发。我们报告了在光腔中使用冷Rb原子进行的实验,并提供了实验结果,这些实验证明了CQED激发的这种干涉控制及其直接应用于腔透射光的全光切换和交叉相位调制研究中。 (C)2014年美国眼镜学会

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