论文标题
使用点源原子干涉测量法的稳健惯性传感,用于跨越部分周期的干涉图
Robust inertial sensing with point-source atom interferometry for interferograms spanning a partial period
论文作者
论文摘要
点源原子干涉法(PSI)使用冷原子云中的速度分布,同时测量一个加速度的轴,并从相位,方向和原子干扰条纹图像的旋转轴和两个旋转轴。对于惯性感测和精确测量中的实际应用,重要的是要测量广泛的系统旋转速率,这对应于远远不到一个完全干扰条纹的干涉图与许多条纹。先前用于PSI的干涉图分析技术对低旋转速率不敏感,该技术在整个云上产生的一个完整干扰条纹较少,从而限制了仪器的动态范围。我们引入了一种实验方法,新的原子干涉法,并且与光学相位转移干涉法密切相关,该方法可有效从分数条纹组成的信号中提取旋转值以及许多不知道旋转速率的边缘。我们的方法使用四个干涉图,每种具有控制的拉曼激光相移,以重建基础原子干涉仪相位图。
Point source atom interferometry (PSI) uses the velocity distribution in a cold atom cloud to simultaneously measure one axis of acceleration and two axes of rotation from the phase, orientation, and period of atomic interference fringe images. For practical applications in inertial sensing and precision measurement, it is important to be able to measure a wide range of system rotation rates, corresponding to interferograms with far less than one full interference fringe to very many fringes. The interferogram analysis techniques used previously for PSI are not sensitive to low rotation rates, which generates less one full interference fringe across the cloud, limiting the dynamic range of the instrument. We introduce an experimental method, new to atom interferometry and closely related to optical phase-shifting interferometry, that is effective in extracting rotation values from signals consisting of fractional fringes as well as many fringes without prior knowledge of the rotation rate. Our method uses four interferograms, each with a controlled Raman laser phase shift, to reconstruct the underlying atomic interferometer phase map.