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

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arxiv 1506.02853 v1 pith:X23EEDQS submitted 2015-06-09 physics.geo-ph

classification physics.geo-ph
keywords atomicgeoidpotentialclockscontinentslevellocaloptical
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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.

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  1. Sub-Doppler cooling of bosonic strontium in a two-color MOT

    physics.atom-ph 2025-07 conditional novelty 6.0 of 10

    A two-color strontium MOT using the green metastable transition cools atoms to 105 microkelvin, and the same apparatus yields a new transition frequency and a 45 microkelvin magnetic trap.

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