Cite this article:
Chen Ning, Zhou Min, Chen Hai-Qin, Fang Su, Huang Liang-Yu, Zhang Xiao-Hang, Gao Qi, Jiang Yan-Yi, Bi Zhi-Yi, Ma Long-Sheng, Xu Xin-Ye. Clock-transition spectrum of 171Yb atoms in a one-dimensional optical latticeJ. Chin. Phys. B, 2013, 22(9): 090601.
| Chen Ning, Zhou Min, Chen Hai-Qin, Fang Su, Huang Liang-Yu, Zhang Xiao-Hang, Gao Qi, Jiang Yan-Yi, Bi Zhi-Yi, Ma Long-Sheng, Xu Xin-Ye. Clock-transition spectrum of 171Yb atoms in a one-dimensional optical latticeJ. Chin. Phys. B, 2013, 22(9): 090601. |
Clock-transition spectrum of 171Yb atoms in a one-dimensional optical lattice
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Abstract
An optical atomic clock with 171Yb atoms is devised and tested. By using a two-stage Doppler cooling technique, the 171Yb atoms are cooled down to a temperature of 6±3 μK, which is close to the Doppler limit. Then, the cold 171Yb atoms are loaded into a one-dimensional optical lattice with a wavelength of 759 nm in the Lamb-Dicke regime. Furthermore, these cold 171Yb atoms are excited from the ground-state 1S0 to the excited-state 3P0 by a clock laser with a wavelength of 578 nm. Finally, the 1S0-3P0 clock-transition spectrum of these 171Yb atoms is obtained by measuring the dependence of the population of the ground-state 1S0 upon the clock-laser detuning. -
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