首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Single-Photon Rydberg Excitation and Trap-Loss Spectroscopy of Cold Cesium Atoms in a Magneto-Optical Trap by Using of a 319-nm Ultraviolet Laser System
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Single-Photon Rydberg Excitation and Trap-Loss Spectroscopy of Cold Cesium Atoms in a Magneto-Optical Trap by Using of a 319-nm Ultraviolet Laser System

机译:319 nm紫外激光系统对磁光阱中冷铯原子的单光子里德堡激发和阱损分析

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摘要

We demonstrate the single-photon Rydberg excitation of cesium atoms in a magneto-optical trap (MOT). We excite atoms directly from 6S1/2 ground state to nP3/2(n=70{hbox-100 Rydberg state with a narrow-linewidth 319-nm ultra-violet laser. The detection of Rydberg states is performed by monitoring the reduction of fluorescence signal of the MOT as partial population on 6S1/2 (F = 4) ground state are transferred to Rydberg state. We clearly observe Autler-Townes doublet in the trap-loss spectra due to the cooling lights. Utilizing the large electric polarizibility of Rydberg atoms, we observe Stark splitting in the Autler-Townes doublet induced by background DC electric fields. We investigate the dependence of Stark shift on electric fields by theoretical analysis, and then infer the DC electric field from the measured Stark splitting. We find that there is a 44.8(4) mV/cm DC electric field in the vicinity of the cold ensemble. It indicates that high-lying Rydberg atoms can be used as sensors for DC electric fields.
机译:我们证明了磁光阱(MOT)中铯原子的单光子里德堡激发。我们使用窄线宽319 nm紫外激光将原子从6S1 / 2基态直接激发到nP3 / 2(n = 70 { hbox-100 Rydberg态)。 MOT的荧光信号作为部分人口在6S1 / 2(F = 4)基态上转移到Rydberg态,我们清楚地观察到了冷却光导致的陷阱损失谱中的Autler-Townes峰成倍增加,利用了在里德堡原子上,我们观察到了背景直流电场在Autler-Townes双峰中的Stark分裂,并通过理论分析研究了Stark位移对电场的依赖性,然后从测得的Stark分裂中推断出DC电场。在冷群附近有一个44.8(4)mV / cm的直流电场,这表明高处的里德堡原子可以用作直流电场的传感器。

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