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双色磁光阱中冷原子的无背景荧光检测

Background-free fluorescence detection of cold atoms in a two-color magneto-optical trap.

作者信息

Yang Baodong, Liang Qiangbing, He Jun, Wang Junmin

机构信息

State Key Laboratory of Quantum Optics and Quantum Optics Devices, Shanxi University, and Institute of Opto-Electronics, Shanxi University, Taiyuan 030006, Shanxi Province, China.

出版信息

Opt Express. 2012 May 21;20(11):11944-52. doi: 10.1364/OE.20.011944.

Abstract

A two-color magneto-optical trap (MOT) for trapping cesium (Cs) atoms is experimentally realized. This two-color MOT employs the radiation forces due to photon scattering from the Cs 6P(3/2) F' = 5 - 8S(1/2) F" = 4 excited-state transition, which replaced one pair of the three pairs of cooling/trapping laser beams operating on a single-photon red detuning to the Cs 6S(1/2) F = 4 - 6P(3/2) F' = 5 cycling transition in a standard six-beam Cs MOT, and can cool and trap atoms on both the red-detuning and blue-detuning sides of the two-photon resonance. Employing the two-color MOT, the background-free fluorescence detection of trapped atoms has been demonstrated. This technique will be useful for observation of weak fluorescence signal radiated from single atoms in MOT.

摘要

实验实现了一种用于俘获铯(Cs)原子的双色磁光阱(MOT)。这种双色磁光阱利用了Cs 6P(3/2) F' = 5 - 8S(1/2) F" = 4激发态跃迁光子散射产生的辐射力,该跃迁取代了标准六束Cs磁光阱中在Cs 6S(1/2) F = 4 - 6P(3/2) F' = 5循环跃迁上单光子红失谐操作的三对冷却/俘获激光束中的一对,并且可以在双光子共振的红失谐和蓝失谐两侧冷却和俘获原子。利用这种双色磁光阱,已证明了对俘获原子的无背景荧光检测。该技术将有助于观察磁光阱中单个原子辐射的微弱荧光信号。

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