Continuous cold atom inertial sensor with 1 nrad.s-1 rotation stability(Conference Presentation)

R. Geiger, I. Dutta, D. Savoie, B. Fang, Carlos Guarrido Alzar, B. Venon, A. Landragin
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引用次数: 1

Abstract

We report the first operation of a cold atom inertial sensor without dead time. Dead times in conventional cold atom interferometers originate from the preparation of a cold atom source prior to its injection in the interferometer and where information on inertial signals is lost. We use a sequence where we simultaneously prepare a cold atom source and operate a light pulse atom interferometer to circumvent the dead time limitation. Therefore the sensor continuously captures all the dynamics with respect to an inertial frame. We show that the continuous operation does not degrade the sensitivity and stability of the atom interferometer, by demonstrating a rotation sensitivity level of less than 1 nrad/s after 10 000 s of integration time. Such a sensitivity level improves previous results by more than an order of magnitude and opens applications of cold atom gyroscopes in inertial navigation and geophysics.
1 nrad连续冷原子惯性传感器。s-1旋转稳定性(会议介绍)
我们报道了一个无死区时间的冷原子惯性传感器的首次运行。传统冷原子干涉仪中的死区时间源于冷原子源注入干涉仪之前的制备以及惯性信号信息的丢失。我们使用了一个同时制备冷原子源和操作光脉冲原子干涉仪的序列来绕过死时间限制。因此,传感器可以连续地捕获相对于惯性系的所有动态。我们证明了连续工作不会降低原子干涉仪的灵敏度和稳定性,证明了在积分时间10000 s后,原子干涉仪的旋转灵敏度水平小于1 nrad/s。这样的灵敏度水平比以前的结果提高了一个数量级以上,并打开了冷原子陀螺仪在惯性导航和地球物理学中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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