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Hertz-Level Clock Spectroscopy of ^(171)Yb Atoms in a One-Dimensional Optical Lattice 被引量:1
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作者 张梦娇 刘慧 +4 位作者 张曦 姜坤良 熊转贤 吕宝龙 贺凌翔 《Chinese Physics Letters》 SCIE CAS CSCD 2016年第7期33-37,共5页
An ultra-narrow spectroscopy of clock transition with high signal-to-noise ratio is crucial for a high-performance atomic optical clock. We present a detailed study about how to obtain a Hertz-level clock transition s... An ultra-narrow spectroscopy of clock transition with high signal-to-noise ratio is crucial for a high-performance atomic optical clock. We present a detailed study about how to obtain a Hertz-level clock transition spectrum of 171 Yb atoms. About 4 × 10^4 atoms are loaded into a one-dimensional optical lattice with a magic wavelength of 759 nm, and a long lifetime of 3 s is realized with the lattice power of I W. Through normalized shelving detection and spin polarization, 171 Yb clock spectroscopy with a fourier-limited linewidth of 5.9 Hz is obtained. Our work represents a key step toward an ytterbium optical clock with high frequency stability. 展开更多
关键词 Hertz-Level Clock spectroscopy of line as time is Yb Atoms in a one-dimensional Optical Lattice in
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