Resolved Raman sideband cooling of a single optically trapped cesium atom

Author:

Tian Zhuangzhuang1,Chang Haobo1,Lv Xin1,Yang Mengna1,Wang Zhihui1,Yang Pengfei1,Zhang Pengfei1ORCID,Li Gang1ORCID,Zhang Tiancai1

Affiliation:

1. Shanxi University

Abstract

We developed a resolved Raman sideband cooling scheme that can efficiently prepare a single optically trapped cesium (Cs) atom in its motional ground states. A two-photon Raman process between two outermost Zeeman sublevels in a single hyperfine state is applied to reduce the phonon number. Our scheme is less sensitive to the variation in the magnetic field than the commonly used scheme where the two outermost Zeeman sublevels belonging to the two separate ground hyperfine states are taken. Fast optical pumping with less spontaneous emission guarantees the efficiency of the cooling process. After cooling for 50 ms, 82% of the Cs atoms populate their three-dimensional ground states. Our scheme improves the long-term stability of Raman sideband cooling in the presence of magnetic field drift and is thus suitable for cooling other trapped atoms or ions with abundant magnetic sublevels.

Funder

National Key Research and Development Program of China

National Natural Science Foundation of China

Fund for Shanxi 1331 Project Key Subjects Construction

Fundamental Research Program of Shanxi Province

Publisher

Optica Publishing Group

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