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Tracking the Vector Acceleration with a Hybrid Quantum Accelerometer Triad.

Science Advances(2022)SCI 1区

IXblue | Univ Bordeaux

Cited 18|Views34
Abstract
Robust and accurate acceleration tracking remains a challenge in many fields. For geophysics and economic geology, precise gravity mapping requires onboard sensors combined with accurate positioning and navigation systems. Cold atom–based quantum inertial sensors can potentially provide these high-precision instruments. However, current scalar instruments require precise alignment with vector quantities. Here, we present the first hybrid three-axis accelerometer exploiting the quantum advantage to measure the full acceleration vector by combining three orthogonal atom interferometer measurements with a classical navigation-grade accelerometer triad. Its ultralow bias permits tracking the acceleration vector over long time scales, yielding a 50-fold improvement in stability (6 × 10 −8 g ) over our classical accelerometers. We record the acceleration vector at a high data rate (1 kHz), with absolute magnitude accuracy below 10 μ g , and pointing accuracy of 4 μrad. This paves the way toward future strapdown applications with quantum sensors and highlights their potential as future inertial navigation units.
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要点】:本研究提出了一种利用量子优势的混合三轴加速度计,能够测量完整加速度向量,实现了加速度向量跟踪稳定性的显著提升。

方法】:通过结合三个正交原子干涉仪测量与经典导航级加速度计三角阵,构建了一种新型的混合三轴加速度计。

实验】:实验中,该加速度计在长时间尺度上跟踪加速度向量,实现了6 × 10^-8 g的稳定性,比传统加速度计提高了50倍。数据记录速率达到1 kHz,绝对量级精度低于10 μg,指向精度为4 μrad。实验使用的数据集未在文中明确提及。