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对209和210钫同位素中7pP2→7dD2光学跃迁的观测。

Observation of 7pP2→7dD2 optical transitions in 209 and 210 francium isotopes.

作者信息

Agustsson S, Bianchi G, Calabrese R, Corradi L, Dainelli A, Khanbekyan A, Marinelli C, Mariotti E, Marmugi L, Mazzocca G, Moi L, Ricci L, Stiaccini L, Tomassetti L

出版信息

Opt Lett. 2017 Sep 15;42(18):3682-3685. doi: 10.1364/OL.42.003682.

Abstract

We report on the direct experimental observation of the 7pP2→7dD2 optical transitions in 209 and 210 francium isotopes. By continuously monitoring the fluorescence emitted by the isotopes collected in a magneto-optical trap (MOT), the electric dipole transitions 7pP2→7dD2 of Fr209, not yet experimentally observed, and 7pP2→7dD2, 7pP2→7dD2 of Fr210 were detected as sub-Doppler depletion dips of the cold atom population. This approach allowed unambiguous identification of the excited state hyperfine structures, even in the absence of a large stable vapor. Our findings demonstrate the effectiveness and the flexibility of fluorescence monitoring of trap depletion upon laser excitation, and broaden the experimental knowledge of francium isotopes and their electronic and nuclear properties. These results will have a relevant impact on ongoing researches for low-energy testing of fundamental symmetries with francium, from atomic parity non-conservation to the electron dipole moment.

摘要

我们报告了在209和210号钫同位素中7pP2→7dD2光学跃迁的直接实验观测结果。通过持续监测收集在磁光阱(MOT)中的同位素发出的荧光,检测到了尚未经实验观测的209Fr的电偶极跃迁7pP2→7dD2以及210Fr的7pP2→7dD2、7pP2→7dD2,它们表现为冷原子数的亚多普勒耗尽凹陷。这种方法能够明确识别激发态超精细结构,即使在没有大量稳定蒸汽的情况下也是如此。我们的研究结果证明了激光激发时阱耗尽荧光监测的有效性和灵活性,并拓宽了钫同位素及其电子和核性质的实验知识。这些结果将对正在进行的用钫进行基本对称性低能测试的研究产生相关影响,从原子宇称不守恒到电子电偶极矩。

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