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Discrete Photodetection of Quantum Jumps on the V Configuration of Atomic Levels

机译:原子能级的V构型对跃迁的离散光电检测

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A theory of the discrete photodetection of quantum jumps on the V configuration of atomic levels has been developed. A three-level source atom is placed in a cavity excited by a resonance fluorescence field. The cavity is tuned to exact resonance with an atomic transition. The cavity mode state is tested by a flux of unexcited (at the entrance) probe atoms passing through the cavity. The energy states of the outgoing probe atoms are detected by ionization chambers, which are assumed ideal. This a posteriori statistical information is indirectly related to the numerical characteristics of a measured quantum system consisting of the source atom and cavity mode. The "tuning" conditions for a discrete photodetector, i.e., the rules for choosing the parameters and durations of the interactions of the cavity mode with the probe and source atoms, intensities of the pump and probe fields that are necessary for observing quantum jumps from the "bright" state to the "dark" one and vice versa, have been determined. A two-state model that describes the dynamics of a quantum jump has been analyzed. The formulas have been obtained for the observable characteristics of quantum jumps: the mean residence time of the quantum system in quasistationary states (durations of the bright and dark periods), probabilities of quantum jumps, mean excitation levels of the quantized cavity mode, etc.
机译:已经开发出了在原子能级的V构型上对量子跃迁进行离散光检测的理论。将三能级源原子放置在由共振荧光场激发的空腔中。腔被调谐到具有原子跃迁的精确共振。腔模式状态通过未激发(在入口处)的探针原子通过腔的通量进行测试。被认为是理想的电离室可以检测出探针原子的能量状态。后验统计信息与由源原子和腔模组成的被测量子系统的数值特性间接相关。离散光电探测器的“调谐”条件,即选择腔模与探针和源原子相互作用的参数和持续时间的规则,泵浦强度和探针场的强度,这些是观察从原子跃迁到量子跃迁所必需的。已经确定“明亮”状态为“黑暗”状态,反之亦然。分析了描述量子跃迁动力学的两态模型。已针对量子跃变的可观察特征获得了公式:量子系统在准平稳状态下的平均停留时间(亮和暗周期的持续时间),量子跃变的概率,量子腔模的平均激发能级等。

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