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Optical properties of an inhomogeneously broadened ΛV-system with multiple excited states

机译:具有多个激发态的非均匀展宽ΛV系统的光学性质

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We present a theoretical model using a density matrix approach to show the influence of multiple excited states on the optical properties of an inhomogeneously broadened ΛV-system of the ~(87)Rb D2 line. These closely spaced multiple excited states cause asymmetry in absorption and dispersion profiles. We observe the reduced absorption profiles, due to dressed state interactions of the applied electromagnetic fields, which results the Mollow sideband-like transparency windows. In a room temperature vapor, we obtain a narrow enhanced absorption and steep positive dispersion at the line center when the strengths of control and pump fields are equal. Here, we show how the probe transmittance varies when it passes through the atomic medium.We also discuss the transient behavior of our system which agrees well with the corresponding absorption and dispersion profiles. This study has potential applications in controllability of group velocity, and for optical and quantum information processing.
机译:我们提出了一种使用密度矩阵方法的理论模型,以显示多个激发态对〜(87)Rb D2线的非均匀加宽ΛV系统的光学特性的影响。这些紧密间隔的多个激发态导致吸收和色散分布图不对称。我们观察到由于所施加电磁场的修整状态相互作用而导致的吸收曲线减小,这导致了像Mollow边带一样的透明窗口。在室温蒸气下,当控制场和泵浦场的强度相等时,我们在管线中心获得窄的增强吸收和陡峭的正色散。在这里,我们展示了当探针透过原子介质时其透射率是如何变化的。我们还讨论了系统的瞬态行为,该行为与相应的吸收和色散曲线非常吻合。这项研究在群速度的可控性以及光学和量子信息处理方面具有潜在的应用。

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