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Spectroscopy of the three-photon laser excitation of cold Rubidium Rydberg atoms in a magneto-optical trap

机译:磁光阱中冷cold里德堡原子的三光子激光激发光谱

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摘要

The spectra of the three-photon laser excitation 5S _(1/2) → 5P _(3/2) → 6S _(1/2) nP of cold Rb Rydberg atoms in an operating magneto-optical trap based on continuous single-frequency lasers at each stage are studied. These spectra contain two partly overlapping peaks of different amplitudes, which correspond to coherent three-photon excitation and incoherent three-step excitation due to the presence of two different ways of excitation through the dressed states of intermediate levels. A four-level theoretical model based on optical Bloch equations is developed to analyze these spectra. Good agreement between the experimental and calculated data is achieved by introducing additional decay of optical coherence induced by a finite laser line width and other broadening sources (stray electromagnetic fields, residual Doppler broadening, interatomic interactions) into the model.
机译:基于连续单光子的工作磁光阱中冷Rb Rydberg原子的三光子激光激发5S _(1/2)→5P _(3/2)→6S _(1/2)nP的光谱研究了每个阶段的高频率激光器。这些光谱包含两个不同幅度的部分重叠的峰,这对应于相干三光子激发和不相干三步激发,这是由于存在通过中间能级的修整状态的两种不同激发方式引起的。建立了基于光学布洛赫方程的四级理论模型来分析这些光谱。通过将有限的激光线宽和其他展宽源(杂散电磁场,残留多普勒展宽,原子间相互作用)引入有限的激光线宽引起的光学相干衰减,可以在实验数据和计算数据之间取得良好的一致性。

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