对2级量子系统的重复询问

J. Prestage, Sang K. Chung
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引用次数: 3

摘要

捕获离子时钟通过重复询问同一量子系统(单个离子或由数百万个离子组成的电离气体),从参考原子跃迁中获得信息。相比之下,原子束频率标准测量的是连续补充的“流过”配置中的参考原子跃迁,其中初始系综原子相干性为零。我们将描述在量子原子系统的原子状态选择和制备尚未完成时可能出现的一些问题和问题,即光泵浦没有完全放松相干性,也没有完全将原子转移到初始状态。我们提出了一个简单的两级密度矩阵分析,显示了在状态选择过程中的频率移动如何导致测量时钟跃迁的频率移动。当使用低强度灯光源进行状态选择时,这些考虑是非常重要的,其中存在相对较弱的弛豫和离子重新泵送到初始状态,并且原子样品中原子相干设置的“环境”弛豫要弱得多。
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Repetitive interrogation of 2-level quantum systems
Trapped ion clocks derive information from a reference atomic transition by repetitive interrogations of the same quantum system, either a single ion or ionized gas of many millions of ions. Atomic beam frequency standards, by contrast, measure reference atomic transitions in a continuously replenished “flow through” configuration where initial ensemble atomic coherence is zero. We will describe some issues and problems that can arise when atomic state selection and preparation of the quantum atomic system is not completed, that is, optical pumping has not fully relaxed the coherence and also not fully transferred atoms to the initial state. We present a simple two-level density matrix analysis showing how frequency shifts during the state-selection process can cause frequency shifts of the measured clock transition. Such considerations are very important when a low intensity lamp light source is used for state selection, where there is relatively weak relaxation and re-pumping of ions to an initial state and much weaker ‘environmental’ relaxation of the atomic coherence set-up in the atomic sample.
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