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  • Global Observation of an Up to 9 Day Long, Recurring, Monochromatic Seismic Source Near 10.9 mHz Associated With Tsunamigenic Landslides in a Northeast Greenland Fjord

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Global Observation of an Up to 9 Day Long, Recurring, Monochromatic Seismic Source Near 10.9 mHz Associated With Tsunamigenic Landslides in a Northeast Greenland Fjord

We report the discovery of an unprecedented, monochromatic low-frequency seismic source arising from the fjords of North-East Greenland. Following a landslide and tsunami event in Dickson fjord on 16 September 2023, seismic waves were detected by broad-band seismometers worldwide. Both frequency and phase velocity of the waves are consistent with fundamental mode Rayleigh- and Love-waves. However, the decay rate of these waves is much slower than predicted for freely propagating surface waves. Therefore, we infer a long-lasting and slowly decaying source process. Although the 16 September 2023 event was by far the largest, analysis of historical seismic data has revealed five other previously undetected events, all with a fundamental frequency between 10.85 and 11.02 mHz. Of these six events, the signal of the largest two events initially decayed with a quality factor, Q close to Q=500. This increased to Q=3000 within the first 10 hours and could thus be detected for up to nine days. The smaller four events had a slow decay-rate (Q>1000) for their entire duration. In comparison, the global average attenuation of Rayleigh waves at these frequencies is Q=117 for PREM, thus precluding a single, impulsive source for these signals.

Gleaning archives of optical and SAR satellite images reveals that at least four of the six events could be temporally correlated with landslides in Dickson fjord. However, such rapid transient events cannot explain the long duration of the radiated seismic waves. Our modelling of the largest event shows that a transversal seiche in Dickson fjord, excited by a landslide induced tsunami, can account for both the monochromatic low frequency signal as well as its seismic signal amplitude and radiation pattern. However, our seiche modelling indicates that the seiche should have Q < 250. Therefore, it remains unclear what keeps the seiche going for the entire duration of the observed seismic signal. However, the phase coherence of the VLP signal leads us to conjecture that an undetermined, in-phase, force feedback mechanism may be at work to continuously add energy into the system.


Session: ESC-SSA Joint Session: Climate Change and Environmental Seismology [Poster Session]

Type: Poster

Room: Exhibit Hall

Date: 5/3/2024

Presentation Time: 08:00 AM (local time)

Presenting Author: Aurélien Mordret

Student Presenter: No


Additional Authors

Rudolf Widmer-Schnidrig

Corresponding Author

widmer@gis.uni-stuttgart.de

University of Stuttgart

Aurélien Mordret

Presenting Author

aurelien.mordret@univ-grenoble-alpes.fr

Université Grenoble Alpes

Kristian Svennevig

ksv@geus.dk

Geological Survey of Denmark and Greenland

Stephen Hicks

stephen.hicks@ucl.ac.uk

University College London

Thomas Forbriger

thomas.forbriger@kit.de

Karlsruhe Institute of Technology

Thomas Lecocq

thomas.lecocq@seismology.be

Royal Observatory of Belgium

Anne Mangeney

mangeney@ipgp.fr

Université Paris Cité

Clément Hibert

hibert@unistra.fr

Université de Strasbourg

Niels Korsgaard

njk@geus.dk

Geological Survey of Denmark and Greenland

Antoine Lucas

lucas@ipgp.fr

Université Paris Cité, Paris, , France

Claudio Satriano

satriano@ipgp.fr

Université Paris Cité, Paris, , France

Robert E Anthony

reanthony@usgs.gov

U.S. Geological Survey, Albuquerque, New Mexico, United States

Sven Schippkus

sven.schippkus@uni-hamburg.de

Universität Hamburg, Hamburg, , Germany

Søren Rysgaard

rysgaard@au.dk

Aarhus University, Aarhus, , Denmark

Wieter Boone

wieter.boone@vliz.be

Flanders Marine Institute, Oostende, , Belgium

Steven Gibbons

steven.gibbons@ngi.no

Norges Geotekniske Institutt, Oslo, , Norway

Kristen L Cook

kristen.cook@univ-grenoble-alpes.fr

University Grenoble Alpes, Grenoble, , France

Sylfest Glimsdal

sylfest.glimsdal@ngi.no

Norges Geotekniske Institutt, Oslo, , Norway

Finn Løvholt

finn.lovholt@ngi.no

Norges Geotekniske Institutt, Oslo, , Norway

Koen Van Noten

koen.vannoten@seismology.be

Royal Observatory of Belgium, Brussels, , Belgium

Peter H Voss

pv@geus.dk

Geological Survey of Denmark and Greenland, Copenhagen, , Denmark

Carl Ebeling

cebeling@ucsd.edu

University of California, San Diego, La Jolla, California, United States

Greenland VLP Team .

ksv@geus.dk

Geological Survey of Denmark and Greenland, Copenhagen, , Denmark

 

Global Observation of an Up to 9 Day Long, Recurring, Monochromatic Seismic Source Near 10.9 mHz Associated With Tsunamigenic Landslides in a Northeast Greenland Fjord

Category

ESC-SSA Joint Session: Climate Change and Environmental Seismology

Description