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Influence of Doppler broadening on cross-Kerr nonlinearity in a four-level inverted-Y system: An analytical approach

机译:多普勒扩大对四级倒立系统交叉克尔非线性的影响:分析方法

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In this work, we study the influence of Doppler broadening on cross-Kerr nonlinearity in a four-level inverted-Y atomic system under electromagnetically induced transparency (EIT) condition. The first- and third-susceptibilities in the presence of Doppler effect are derived as a function of probe, signal and coupling beams and temperature of medium. Under EIT condition, cross-Kerr nonlinearity is enhanced several orders of magnitude compared to that without EIT. The Doppler effect leads to a reduction in the transparent efficiency and thus reduces the amplitude of cross-Kerr nonlinear coefficient. For hot atomic gaseous medium, such consideration of the Doppler effect may be useful for experimental observations and apply to photonic devices operating at different temperature conditions.
机译:在这项工作中,我们研究了电磁诱导的透明度(EIT)条件下四级倒诞原子系统中跨克尔非线性对多普勒扩大对跨克尔非线性的影响。 在多普勒效应存在下的第一和第三敏感性衍生为探针,信号和耦合光束和介质温度的函数。 在EIT条件下,与没有EIT的情况相比,交叉克尔非线性增强了几个数量级。 多普勒效应导致透明效率的降低,从而降低了交叉克尔非线性系数的幅度。 对于热原子气态介质,这种对多普勒效应的考虑可能对于实验观察可能是有用的并且适用于在不同温度条件下操作的光子器件。

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