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A portable magneto-optical trap with prospects for atom interferometry in civil engineering

机译:便携式磁光阱有望在土木工程中进行原子干涉测量

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摘要

The high precision and scalable technology offered by atom interferometry has the opportunity to profoundly affect gravity surveys, enabling the detection of features of either smaller size or greater depth. While such systems are already starting to enter into the commercial market, significant reductions are required in order to reach the size, weight and power of conventional devices. In this article, the potential for atom interferometry based gravimetry is assessed, suggesting that the key opportunity resides within the development of gravity gradiometry sensors to enable drastic improvements in measurement time. To push forward in realizing more compact systems, techniques have been pursued to realize a highly portable magneto-optical trap system, which represents the core package of an atom interferometry system. This can create clouds of 107 atoms within a system package of 20 l and 10 kg, consuming 80 W of power.This article is part of the themed issue ‘Quantum technology for the 21st century’.
机译:原子干涉仪提供的高精度和可扩展技术,有机会深刻影响重力测量,从而能够检测出尺寸较小或深度较大的特征。尽管这样的系统已经开始进入商业市场,但是为了达到常规设备的尺寸,重量和功率,需要大量减少。在本文中,对基于原子干涉法的重量分析法的潜力进行了评估,这表明关键机会在于重力梯度法传感器的发展,从而可以大大缩短测量时间。为了推动实现更紧凑的系统,已经寻求了实现高度便携的磁光阱系统的技术,该系统代表了原子干涉系统的核心组件。这样可以在20 l和10 kg的系统封装中创建10 7 个原子的云,消耗80 W的功率。本文是主题为“ 21世纪的量子技术”的一部分。

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