重力仪
大地测量学
物理
噪音(视频)
干涉测量
重量分析法
地球动力学
极移
原子干涉仪
遥感
地质学
天文干涉仪
光学
地球自转
地震学
计算机科学
构造学
人工智能
图像(数学)
作者
Christian Freier,Matthias Hauth,Vladimir Schkolnik,Bastian Leykauf,Manuel Schilling,Hartmut Wziontek,H. G. Scherneck,Jürgen Müller,Achim Peters
标识
DOI:10.1088/1742-6596/723/1/012050
摘要
Changes of surface gravity on Earth are of great interest in geodesy, earth sciences and natural resource exploration. They are indicative of Earth system's mass redistributions and vertical surface motion, and are usually measured with falling corner-cube- and superconducting gravimeters (FCCG and SCG). Here we report on absolute gravity measurements with a mobile quantum gravimeter based on atom interferometry. The measurements were conducted in Germany and Sweden over periods of several days with simultaneous SCG and FCCG comparisons. They show the best-reported performance of mobile atomic gravimeters to date with an accuracy of 39nm/s2, long-term stability of 0.5nm/s2 and short-term noise of 96nm/s2/√Hz. These measurements highlight the unique properties of atomic sensors. The achieved level of performance in a transportable instrument enables new applications in geodesy and related fields, such as continuous absolute gravity monitoring with a single instrument under rough environmental conditions.
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