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Phase-dependent interference mechanisms in a three-level Lambda system driven by a quantized laser field

机译:由量子化激光场驱动的三电平Lambda系统中的相位相关干扰机制

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摘要

The dynamics of an atomic few-level system can depend on the phase of driving fields coupled to the atom if certain conditions are satisfied. This is of particular interest to control interference effects, which can alter the system properties considerably. In this article, we discuss the mechanisms of such phase control and interference effects in an atomic three-level system in the ? configuration, where the upper state spontaneously decays into the two lower states. The lower states are coupled by a driving field, which we treat as quantized. This allows for an interpretation on the single photon level for both the vacuum and the driving field. By analysing the system behaviour for a driving field initially in non-classical states with only a few Fock number states populated, we find that even though the driving field is coupled to the lower states only, it induces a multiplet of upper states. Then interference occurs independently in three-level subsystems in the V configuration, each formed by two adjacent upper states and a single dressed lower state.
机译:如果满足某些条件,那么原子级系统的动力学可能取决于耦合到原子的驱动场的相位。控制干扰的影响尤其重要,因为干扰的影响会大大改变系统的性能。在本文中,我们讨论了在原子三能级系统中这种相位控制和干扰效应的机制。配置,其中上层状态自发地衰减为两个下层状态。较低的状态由一个驱动场耦合,我们将其视为量化的。这允许在真空和驱动场的单光子水平上进行解释。通过分析最初处于非古典状态且仅填充了少数Fock数状态的驱动场的系统行为,我们发现,即使驱动场仅耦合到较低状态,也会引起较高状态的多重。然后,在V型配置的三级子系统中独立发生干扰,每个子系统由两个相邻的上状态和一个单独的下装状态形成。

著录项

  • 作者

    Evers, J.;

  • 作者单位
  • 年度 2005
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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