The Potential of Continuous, Local Atomic Clock Measurements for Earthquake Prediction and Volcanology

Mihai Bondarescu, R. Bondarescu, P. Jetzer, A. Lundgren
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引用次数: 10

Abstract

Modern optical atomic clocks along with the optical fiber technology currently being developed can measure the geoid, which is the equipotential surface that extends the mean sea level on continents, to a precision that competes with existing technology. In this proceeding, we point out that atomic clocks have the potential to not only map the sea level surface on continents, but also look at variations of the geoid as a function of time with unprecedented timing resolution. The local time series of the geoid has a plethora of applications. These include potential improvement in the predictions of earthquakes and volcanoes, and closer monitoring of ground uplift in areas where hydraulic fracturing is performed.
连续的局部原子钟测量在地震预测和火山学中的潜力
现代光学原子钟以及目前正在开发的光纤技术可以测量大地水准面,这是扩展大陆平均海平面的等势面,其精度可以与现有技术竞争。在本程序中,我们指出,原子钟不仅具有绘制大陆海平面表面的潜力,而且还具有前所未有的计时分辨率,可以查看大地水准面作为时间函数的变化。大地水准面局部时间序列有大量的应用。其中包括对地震和火山预测的潜在改进,以及对进行水力压裂的地区的地面隆起进行更密切的监测。
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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