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Earth Science

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32
Citations
2863
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8804
National Ranking
2852

Overview

Vernon F. Cormier is affiliated with the University of Connecticut in the United States and has contributed to the fields of Earth and Planetary Sciences and Biochemistry, Genetics and Molecular Biology. Their research focuses primarily on geophysics, with significant work in high-pressure geophysics and materials, earthquake and tectonic studies, geological and geochemical analysis, geomagnetism and paleomagnetism studies, seismic waves and analysis, seismic imaging and inversion techniques, and geophysics and sensor technology.

Their recent scholarly output includes several publications across notable journals, reflecting their research interests and contributions to geophysics and Earth sciences. Some of their recent papers include:

  • Heterogeneity Spectrum of Earth's Upper Mantle Obtained from the Coherence of Teleseismic P Waves, 2020, Communications in Computational Physics
  • Mantle Phase Changes Detected From Stochastic Tomography, 2023, Journal of Geophysical Research Solid Earth
  • Attenuation and scattering in the innermost inner core, 2025, Physics of The Earth and Planetary Interiors

In addition to these, related works from coauthors and collaborators expand the context of this research, indicating a broader engagement with seismic attenuation and scattering phenomena.

Vernon F. Cormier has published multiple articles in key scientific venues, including:

  • Journal of Geophysical Research Solid Earth
  • Communications in Computational Physics
  • Solid Earth
  • Physics of The Earth and Planetary Interiors
  • Seismological Research Letters

Frequent collaborators in Vernon F. Cormier's research include:

  • Michael I. Bergman
  • Peter Olson
  • Yingcai Zheng
  • Baolong Zhang
  • Yiteng Tian

Their main fields of study demonstrate a blend between geophysics and molecular biology, though the primary emphasis remains on Earth and planetary sciences.

The scope of their research addresses key geological processes and seismic phenomena, such as scattering, attenuation of seismic waves, and tectonic and mantle dynamics. This scientific work supports a broad understanding of Earth's inner structure and geodynamic processes through advanced imaging and analysis techniques.

Best Publications

  • THE EFFECT OF ATTENUATION ON SEISMIC BODY WAVES

    Vernon F. Cormier

  • Amplification of ground motion and waveform complexity in fault zones: examples from the San Andreas and Calaveras Faults

    V. F. Cormier;P. Spudich

  • Tectonics near the junction of the Aleutian and Kuril-Kamchatka arcs and a mechanism for middle tertiary magmatism in the Kamchatka Basin

    Vernon F. Cormier

  • Direct measurement of the mantle attenuation operator from broadband P and S Waveforms

    George L. Choy;Vernon F. Cormier

  • Frequency-dependent seismic attenuation in the inner core. 2. A scattering and fabric interpretation

    Vernon F. Cormier;Xu Li;Xu Li

  • Slab diffraction of S waves

    Vernon F. Cormier

  • Full wave theory applied to a discontinuous velocity increase: The inner core boundary

    V.F. Cormier;P.G. Richards

  • Frequency-dependent seismic attenuation in the inner core 1. A viscoelastic interpretation

    Xu Li;Xu Li;Vernon F. Cormier

  • Seismic attenuation of the inner core: Viscoelastic or stratigraphic?

    Vernon F. Cormier;Li Xu;George L. Choy

  • Short-period PKP phases and the anelastic mechanism of the inner core

    Vernon F. Cormier

  • The structure of the inner core inferred from short- period and broadband GDSN data

    George L. Choy;Vernon F. Cormier

  • Frequency dependence of Q in the mantle underlying the shield areas of Eurasia, Part III: The Q model

    Zoltan A. Der;Alison C. Lees;Vernon F. Cormier

  • Seismic waves at the epicenter's antipode

    Jose A Rial;V. F. Cormier

  • Texture of the uppermost inner core from forward- and back-scattered seismic waves

    Vernon F. Cormier

  • The structure of the base of the outer core inferred from seismic waves diffracted around the inner core

    Zuihong Zou;Keith D. Koper;Vernon F. Cormier

  • On the inner—outer core density contrast from PKiKP/PcP amplitude ratios and uncertainties caused by seismic noise

    Hrvoje Tkalčić;Brian L. N. Kennett;Vernon F. Cormier

  • Comments on ‘The damping of core waves’ by Anthony Qamar and Alfredo Eisenberg

    Vernon F. Cormier;Paul G. Richards

  • Waveform search for the innermost inner core

    Vernon F. Cormier;Anastasia Stroujkova

  • Regional variations in the uppermost 100 km of the Earth's inner core

    Anastasia Stroujkova;Vernon F. Cormier

  • D as a transition in the heterogeneity spectrum of the lowermost mantle

    Vernon F. Cormier

Frequent Co-Authors

Hrvoje Tkalčić
Hrvoje Tkalčić Australian National University
Brian Kennett
Brian Kennett Australian National University
Keith D. Koper
Keith D. Koper University of Utah
Christine Thomas
Christine Thomas University of Münster
Meghan S. Miller
Meghan S. Miller Australian National University
John P. Brodholt
John P. Brodholt University College London
Kei Hirose
Kei Hirose University of Tokyo
David A. Yuen
David A. Yuen Columbia University
Stéphane Rondenay
Stéphane Rondenay University of Bergen
Shun-ichiro Karato
Shun-ichiro Karato Yale University

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