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Propagation of two short laser pulse trains in a Λ-type three-level medium under conditions of electromagnetically induced transparency

机译:在电磁感应透明条件下,两个短激光脉冲序列在Λ型三能级介质中的传播

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摘要

We investigate the dynamics of a pair of short laser pulse trains propagating in a medium consisting of three-level Λ-type atoms by numerically solving the Maxwell–Schrödinger equations for atoms and fields. By performing propagation calculations with different parameters, under conditions of electromagnetically induced transparency, we compare the propagation dynamics by a single pair of probe and coupling laser pulses and by probe and coupling laser pulse trains. We discuss the influence of the coupling pulse area, number of pulses, and detunings on the probe laser propagation and realization of electromagnetically induced transparency conditions, as well on the formation of a dark state.
机译:通过数值求解原子和场的麦克斯韦-薛定er方程,我们研究了在由三能级Λ型原子组成的介质中传播的一对短激光脉冲序列的动力学。通过在电磁感应的透明性条件下使用不同的参数执行传播计算,我们比较了一对探针和耦合激光脉冲以及探针和耦合激光脉冲序列的传播动力学。我们讨论了耦合脉冲面积,脉冲数和失谐对探针激光传播和电磁感应透明条件的实现以及对暗态形成的影响。

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