World's Best Scientists 2026 revealed!
Michael E Weber

Michael E Weber

D-Index & Metrics

Earth Science

D-Index
50
Citations
8597
World Ranking
3431
National Ranking
235

Overview

Michael E Weber is affiliated with the University of Bonn in Germany and specializes in Earth and Planetary Sciences, with a strong focus on Geophysics. Their research spans several subfields including Artificial Intelligence, Ocean Engineering, Aerospace Engineering, and Earth-Surface Processes.

The scientist's work primarily revolves around earthquake and tectonic studies, seismic waves and analysis, and high-pressure geophysics and materials. Other notable research topics include geological and geochemical analysis, seismology and earthquake studies, geophysics and sensor technology, and synthetic aperture radar (SAR) applications and techniques.

Recent papers authored or co-authored by Michael E Weber cover a range of subjects related to seismology and geophysical systems. These include:

  • On the comparison of strain measurements from fibre optics with a dense seismometer array at Etna volcano (Italy), 2021, Solid Earth
  • The SWATH-D Seismological Network in the Eastern Alps, 2021, Seismological Research Letters
  • Relocation of earthquakes in the southern and eastern Alps (Austria, Italy) recorded by the dense, temporary SWATH-D network using a Markov chain Monte Carlo inversion, 2021, Solid Earth
  • Constraints on Crustal Structure in the Vicinity of the Adriatic Indenter (European Alps) From Vp and Vp/Vs Local Earthquake Tomography, 2022, Journal of Geophysical Research Solid Earth
  • Seismological and Geophysical Signatures of the Deep Crustal Magma Systems of the Cenozoic Volcanic Fields Beneath the Eifel, Germany, 2020, Geochemistry Geophysics Geosystems

Frequent co-authors collaborating with Michael E Weber include:

  • Christian Haberland
  • Benjamín Heit
  • Azam Jozi Najafabadi
  • Eline Le Breton
  • Mark R. Handy

The scientist has published multiple studies in key venues within their domain, including:

  • Solid Earth
  • Journal of Geophysical Research Solid Earth
  • Seismological Research Letters
  • Geochemistry Geophysics Geosystems
  • Scientific Reports

Best Publications

  • Dynamic strain determination using fibre-optic cables allows imaging of seismological and structural features

    Philippe Jousset;Thomas Reinsch;Trond Ryberg;Hanna Blanck

  • Scientific Results from the Mallik 2002 Gas Hydrate Production Research Well Program, Mackenzie Delta, Northwest Territories, Canada

    S R Dallimore;T S Collett

  • Active growth of the Bengal Fan during sea-level rise and highstand

    Michael E. Weber;Michael H. Wiedicke;Hermann R. Kudrass;Christian Hübscher

  • Calibration and application of marine sedimentary physical properties using a multi-sensor core logger

    Michael E. Weber;Frank Niessen;Gerhard Kuhn;Michael Wiedicke

  • Millennial-scale variability in Antarctic ice-sheet discharge during the last deglaciation

    M. E. Weber;P.U. Clark;G. Kuhn;A. Timmermann

  • Mapping the Hawaiian plume conduit with converted seismic waves

    Xueqing Li;Rainer Kind;K. Priestley;Stephan V. Sobolev

  • The AlpArray Seismic Network: A Large-Scale European Experiment to Image the Alpine Orogen

    György Hetényi;Irene Molinari;John Clinton;Götz Bokelmann

  • Hydraulic fracture monitoring in hard rock at 410 m depth with an advanced fluid-injection protocol and extensive sensor array

    Arno Zang;Ove Stephansson;Leif Stenberg;Katrin Plenkers

  • The Sensitivity of the Antarctic Ice Sheet to a Changing Climate: Past, Present, and Future

    T. L. Noble;E. J. Rohling;E. J. Rohling;A. R.A. Aitken;H. C. Bostock

  • P- and S-wave reflections from anomalies in the lowermost mantle

    M. Weber

  • A deep crustal fluid channel into the San Andreas Fault system near Parkfield, California

    Michael Becken;Oliver Ritter;S. K. Park;P. A. Bedrosian

  • The crustal structure of the Dead Sea Transform

    M. Weber;K. Abu-Ayyash;A. Abueladas

  • Bengal Fan sediment transport activity and response to climate forcing inferred from sediment physical properties

    M.E. Weber;M. Wiedicke-Hombach;H.R. Kudrass;H. Erlenkeuser

  • Double beam imaging: Mapping lower mantle heterogeneities using combinations of source and receiver arrays

    Frank Scherbaum;Frank Krüger;Michael Weber

  • DEEP CRUSTAL PROFILE ACROSS THE SOUTHERN KAROO BASIN AND BEATTIE MAGNETIC ANOMALY, SOUTH AFRICA: AN INTEGRATED INTERPRETATION WITH TECTONIC IMPLICATIONS

    A. Lindeque;M.J. De Wit;T. Ryberg;M. Weber

  • The youngest channel-levee system of the Bengal Fan: results from digital sediment echosounder data

    Christian Hübscher;Volkhard Spieβ;Monika Breitzke;Michael E. Weber

  • Early Last Interglacial ocean warming drove substantial ice mass loss from Antarctica

    Chris S.M. Turney;Christopher J. Fogwill;Christopher J. Fogwill;Nicholas R. Golledge;Nicholas R. Golledge;Nicholas P. McKay

  • Computation of body-wave seismograms in absorbing 2-D media using the Gaussian beam method: comparison with exact methods

    Michael Weber

  • Double beam analysis of anomalies in the core‐mantle boundary region

    Frank Krüger;Michael Weber;Frank Scherbaum;Jörg Schlittenhardt

  • SH-wave propagation in the whole mantle using high-order finite differences

    Heiner Igel;Michael Weber

Frequent Co-Authors

Helmut Erlenkeuser
Helmut Erlenkeuser Kiel University
Gerhard Kuhn
Gerhard Kuhn University of Bremen
Trond Ryberg
Trond Ryberg University of Potsdam
Maureen E. Raymo
Maureen E. Raymo Lamont-Doherty Earth Observatory
Christian Haberland
Christian Haberland University of Potsdam
Trevor Williams
Trevor Williams Texas A&M University
James Mechie
James Mechie University of Potsdam
Laurie Menviel
Laurie Menviel University of New South Wales
Nicholas R. Golledge
Nicholas R. Golledge Victoria University of Wellington
Peter U. Clark
Peter U. Clark Oregon State University

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