论文标题

原子干涉法,动态范围增加了千倍

Atom interferometry with thousand-fold increase in dynamic range

论文作者

Yankelev, Dimitry, Avinadav, Chen, Davidson, Nir, Firstenberg, Ofer

论文摘要

任何干涉信号固有的周期性都需要在敏感性和基于干涉指标传感器的动态范围之间进行基本权衡。在这里,我们开发了一种方法,用于显着扩展此类传感器的动态范围,而不会损害其灵敏度,比例比例和带宽。该方案基于操作两个同时,几乎重叠的干涉仪,具有全系列相位检测,并且具有不同但较接近的尺度因子。这两个干涉仪在类似莫伊尔的效应中提供的关节周期大于2π,同时受益于接近最大的灵敏度和抑制共同模式噪声。该方法非常适合原子干涉仪,该方法在测量重力惯性力方面具有创纪录的灵敏度,但动态范围有限。我们在实验上证明了一个原子干涉仪,对于静态和动态信号,在单个镜头中具有动态范围的增强范围,并在几次镜头中超过三个数量级以上。这种方法可以显着改善干涉量传感器在具有挑战性,不确定或迅速变化的条件下的操作。

The periodicity inherent to any interferometric signal entails a fundamental trade-off between sensitivity and dynamic range of interferometry-based sensors. Here we develop a methodology for significantly extending the dynamic range of such sensors without compromising their sensitivity, scale-factor, and bandwidth. The scheme is based on operating two simultaneous, nearly-overlapping interferometers, with full-quadrature phase detection and with different but close scale factors. The two interferometers provide a joint period much larger than 2π in a moiré-like effect, while benefiting from close-to-maximal sensitivity and from suppression of common-mode noise. The methodology is highly suited to atom interferometers, which offer record sensitivities in measuring gravito-inertial forces but suffer from limited dynamic range. We experimentally demonstrate an atom interferometer with a dynamic-range enhancement of over an order of magnitude in a single shot and over three orders of magnitude within a few shots, for both static and dynamic signals. This approach can dramatically improve the operation of interferometric sensors in challenging, uncertain, or rapidly varying, conditions.

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