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High sensitivity two-photon spectroscopy of cold atoms in a dark optical trap, using an electron shelving scheme

机译:使用电子搁架方案对暗光阱中冷原子的高灵敏度双光子光谱

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Summary form only given. Utilizing cold and trapped atoms for precision spectroscopy of weak atomic transitions has two important advantages: the suppression of Doppler and time-of-flight broadenings and a combination of long interaction times, weak perturbations and tight confinement, which can be obtained using dark optical traps. We present a new and extremely sensitive method for measuring weak transitions with cold atoms in a dark optical trap, using electron shelving spectroscopy. Our scheme is based on a /spl Lambda/ system. Atoms with two ground states (for example, two hyperfine levels) are stored in the trap in a level that is coupled to the upper (excited) state, by an extremely weak transition. Atoms that undergo the weak transition may be shelved by a spontaneous Raman transition on the second ground level, which is uncoupled to the excited level by the measured photons. Finally, the detection scheme benefits from the multiply excited fluorescence of a strong closed transition from the uncoupled ground-state, that utilizes quantum amplification due to the electron shelving technique. We realized this scheme on a 5S/sub 1/2//spl rarr/5D/sub 5/2/ two-photon transition in cold and optically trapped /sup 85/Rb atoms.
机译:摘要表格仅给出。利用冷和捕获的原子进行精确的弱原子过渡的精确光谱,具有两个重要的优势:抑制多普勒和飞行时间扩大以及长相互作用时间,弱扰动和紧密限制的组合,可以使用暗光学陷阱获得。我们介绍了一种新的和极其灵敏的方法,用于使用电子搁架光谱法测量暗光学陷阱中的冷原子弱转换。我们的计划基于A / SPL Lambda /系统。具有两个地态的原子(例如,两个高浓度水平)以极其弱的转换耦合到上部(激发)状态的水平的水平中储存在陷阱中。经历弱转换的原子可以通过第二地层上的自发拉曼过渡来搁置,其通过测量的光子向激发水平耦合。最后,检测方案从来自非偶联地面状态的强闭合转变的乘法激发荧光的检测方案受益,其利用由于电子搁架技术引起的量子放大。我们在冷和光学捕获/ SUP 85 / RB原子上实现了5S / SUB 1/2 // 2/2 /双光子过渡的5S / SUB 1/2 // 2/2 /双光子过渡方案。

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