带光栅磁光阱的Raman-Ramsey CPT

Rachel Elvin, G. Hoth, Michael W. Wright, J. McGilligan, A. Arnold, P. Griffin, E. Riis
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引用次数: 6

摘要

本文描述了一个将来自光栅磁光阱(GMOT)的冷87rb原子与Lin±Lin相干居群阱(CPT)和脉冲拉姆齐询问相结合的实验。Lin±Lin所需的双色场是通过将来自单个外腔二极管激光器(ECDL)的光与电光调制器(EOM)和声光调制器(AOM)相结合而产生的。利用该激光系统和GMOT,我们能够利用87Rb Di线的F' = 1或F' = 2激发态产生拉曼-拉姆齐条纹。作为实现基于GMOT的频率标准的一步,我们测量了拉姆齐条纹振幅作为偏置磁场和激发态的函数。我们观察到F' = 1时的暗态干涉,并表明F' = 2时这种干涉被抑制,正如之前在热蒸汽电池中使用87Rb的CPT的工作所期望的那样。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Raman-Ramsey CPT with a grating magneto-optical trap
We describe an experiment which combines cold 87 Rb atoms from a grating magneto-optical trap (GMOT) with Lin±Lin coherent population trapping (CPT) and pulsed Ramsey interrogation. The bichromatic fields required for Lin±Lin are generated by combining light from a single external cavity diode laser (ECDL) with an electro-optic modulator (EOM) and an acousto-optic modulator (AOM). With this laser system and the GMOT, we are able to produce Raman-Ramsey fringes using either the F' = 1 or the F' = 2 excited states of the 87Rb Di line. As a step towards realising a frequency standard based on the GMOT, we measure the Ramsey fringe amplitude as a function of the magnetic bias field and the excited state. We observe dark state interference with F' = 1 and show that this interference is suppressed with F' = 2, as expected from prior work on CPT with 87Rb in thermal vapour cells.
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