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      Autocorrelation of the Ground Vibrations Recorded by the SEIS‐InSight Seismometer on Mars

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          Most cited references43

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          The use of fast Fourier transform for the estimation of power spectra: A method based on time averaging over short, modified periodograms

          P. Welch (1967)
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            Processing seismic ambient noise data to obtain reliable broad-band surface wave dispersion measurements

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              Long-range correlations in the diffuse seismic coda.

              The late seismic coda may contain coherent information about the elastic response of Earth. We computed the correlations of the seismic codas of 101 distant earthquakes recorded at stations that were tens of kilometers apart. By stacking cross-correlation functions of codas, we found a low-frequency coherent part in the diffuse field. The extracted pulses have the polarization characteristics and group velocities expected for Rayleigh and Love waves. The set of cross-correlations has the symmetries of the surface-wave part of the Green tensor. This seismological example shows that diffuse waves produced by distant sources are sufficient to retrieve direct waves between two perfectly located points of observation. Because it relies on general properties of diffuse waves, this result has potential applications in other fields.
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                Author and article information

                Contributors
                Journal
                Journal of Geophysical Research: Planets
                J Geophys Res Planets
                American Geophysical Union (AGU)
                2169-9097
                2169-9100
                April 2021
                March 30 2021
                April 2021
                : 126
                : 4
                Affiliations
                [1 ]Institut Supérieur de l'Aéronautique et de l'Espace SUPAERO Toulouse France
                [2 ]Institut de Recherche en Astrophysique et Planétologie Université Toulouse III Paul Sabatier CNRS CNES Toulouse France
                [3 ]Department of Geology University of Maryland, College Park MD USA
                [4 ]Université de Lyon Université Claude Bernard Lyon 1 ENS, CNRS Laboratoire de Géologie de Lyon: Terre, Planètes, Environnement Villeurbanne France
                [5 ]Research School of Earth Sciences The Australian National University Canberra ACT Australia
                [6 ]Institute of Earth Sciences Jaume Almera – CSIC Barcelona Spain
                [7 ]Institut de Physique du Globe de Paris Université de Paris CNRS Paris France
                [8 ]Bensberg Observatory University of Cologne Bergisch Gladbach Germany
                [9 ]Department of Electrical and Electronic Engineering Imperial College London South Kensington Campus London UK
                [10 ]Max Planck Institute for Solar System Research Göttingen Germany
                [11 ]Jet Propulsion Laboratory California Institute of Technology Pasadena CA USA
                Article
                10.1029/2020JE006498
                e162883a-e87a-4a29-841d-7d760445c0ef
                © 2021

                http://onlinelibrary.wiley.com/termsAndConditions#vor

                http://doi.wiley.com/10.1002/tdm_license_1.1

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