Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/95722
Title: Ultra-stable laser interferometry for earthquake detection with terrestrial and submarine optical cables
Other Titles: Submarine optical cables for earthquake detection
Authors: Marra, Giuseppe
Clivati, Cecilia
Richard, Luckett
Tampellini, Anna
Kronjäger, Jochen
Wright, Louise
Mura, Alberto
Levi, Filippo
Robinson, Stephen
Xuereb, Andre
Baptie, Brian
Calonico, Davide
Keywords: Induced seismicity
Earthquakes
Interferometers
Earth (Planet) -- Internal structure
Optical fibers
Issue Date: 2022
Publisher: IRIS
Citation: Marra, G., Clivati, C., Richard, L., Tampellini, A., Kronjäger, J., Wright, L., ... & Calonico, D. (2022). Ultra-stable laser interferometry for earthquake detection with terrestrial and submarine optical cables. Science Postprint
Abstract: Detecting ocean-floor seismic activity is crucial for our understanding of the interior structure and dynamic behavior of the Earth. However, 70% of the planet’s surface is covered by water and seismometers coverage is limited to a handful of permanent ocean bottom stations. We show that existing telecommunication optical fiber cables can detect seismic events when combined with state-of-the-art frequency metrology techniques by using the fiber itself as the sensing element. We detected earthquakes over terrestrial and submarine links with length ranging from 75 to 535 km and a geographical distance from the earthquake's epicenter ranging from 25 to 18,500 km. Implementing a global seismic network for real-time detection of underwater earthquakes requires applying the proposed technique to the existing extensive submarine optical fiber network.
URI: https://www.um.edu.mt/library/oar/handle/123456789/95722
Appears in Collections:Scholarly Works - FacSciPhy



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