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D-Index & Metrics

Earth Science

D-Index
41
Citations
6424
World Ranking
5526
National Ranking
2040

Overview

Jeffrey S. Gee is affiliated with the University of California, San Diego in the United States. Their research spans multiple fields with a primary focus on engineering, specifically ocean engineering. The subfields of their work include geophysics, environmental chemistry, molecular biology, and mechanical engineering.

The scientist's research covers several main topics, including:

  • Drilling and Well Engineering
  • Reservoir Engineering and Simulation Methods
  • Methane Hydrates and Related Phenomena
  • Seismic Imaging and Inversion Techniques
  • Geomagnetism and Paleomagnetism Studies
  • Offshore Engineering and Technologies
  • Hydraulic Fracturing and Reservoir Analysis

Jeffrey S. Gee has published work in various scientific venues. The most frequent publication venues include:

  • Zenodo (CERN European Organization for Nuclear Research)
  • OPAL (Open@LaTrobe) (La Trobe University)
  • Geochemistry Geophysics Geosystems
  • Journal of Field Robotics
  • Nature

The scientist has collaborated regularly with several co-authors, including:

  • David M. Christie
  • Barbara E. John
  • Isabella Premoli Silvá
  • Janet A. Haggerty
  • Frank R. Rack

Recent publications by Jeffrey S. Gee include:

  • "Magnetic survey and autonomous target reacquisition with a scalar magnetometer on a small AUV," 2020, Journal of Field Robotics
  • "Three-dimensional magnetic stripes require slow cooling in fast-spread lower ocean crust," 2021, Nature
  • "Magnetic Structure of Fast-Spread Oceanic Crust at Pito Deep," 2020, Geochemistry Geophysics Geosystems
  • "Significance of Short-Wavelength Magnetic Anomaly Low Along the East Pacific Rise Axis, 9°50'N," 2023, Geochemistry Geophysics Geosystems
  • "Thermal Resolution of Unblocking Temperatures (TROUT): A Method for "Unmixing" Multi-Component Magnetizations," 2023, Geochemistry Geophysics Geosystems

Best Publications

  • An early India-Asia contact: Paleomagnetic constraints from Ninetyeast Ridge, ODP Leg 121

    Chris T. Klootwijk;Jeff S. Gee;John W. Peirce;Guy M. Smith

  • A long in situ section of the lower ocean crust: results of {ODP} Leg 176 drilling at the Southwest Indian Ridge

    Henry J.B. Dick;James H. Natland;Jeffrey C. Alt;Wolfgang Bach

  • Source of oceanic magnetic anomalies and the geomagnetic polarity time scale

    Jeffrey S. Gee;Dennis V. Kent

  • Geology of the Atlantis Massif (Mid-Atlantic Ridge, 30° N): Implications for the evolution of an ultramafic oceanic core complex

    Donna K. Blackman;Jeffrey A. Karson;Deborah S. Kelley;Johnson R. Cann

  • Flow directions in dikes from anisotropy of magnetic susceptibility data: The bootstrap way

    L. Tauxe;J. S. Gee;H. Staudigel

  • The intensity of the Earth's magnetic field over the past 160 million years

    M.T. Juárez;Lisa Tauxe;J.S. Gee;T. Pick

  • The effect of remanence anisotropy on paleointensity estimates: a case study from the Archean Stillwater Complex

    P.A Selkin;J.S Gee;L Tauxe;W.P Meurer

  • Large-scale motion between Pacific and Atlantic hotspots

    John A. Tarduno;Jeff Gee

  • Geomagnetic intensity variations over the past 780 kyr obtained from near-seafloor magnetic anomalies

    Jeffrey S. Gee;Steven C. Cande;John A. Hildebrand;Katie Donnelly

  • Footwall rotation in an oceanic core complex quantified using reoriented Integrated Ocean Drilling Program core samples

    A. Morris;J. S. Gee;N. Pressling;B. E. John

  • Dike surface lineations as magma flow indicators within the sheeted dike complex of the Troodos Ophiolite, Cyprus

    Robert J. Varga;Jeffrey S. Gee;Hubert Staudigel;Lisa Tauxe

  • Shallow intrusive directions of sheeted dikes in the Troodos ophiolite: Anisotropy of magnetic susceptibility and structural data

    Hubert Staudigel;Jeff Gee;Lisa Tauxe;Robert J. Varga

  • 40Ar/39Ar ages and paleomagnetism of São Miguel lavas, Azores

    Catherine L. Johnson;Jan R. Wijbrans;Catherine G. Constable;Jeff Gee

  • Drilling constraints on lithospheric accretion and evolution at Atlantis Massif, Mid‐Atlantic Ridge 30°N

    D. K. Blackman;B. Ildefonse;B. E. John;Y. Ohara

  • Paleomagnetic evidence of large footwall rotations associated with low-angle faults at the Mid-Atlantic Ridge

    Miguel Garcés;Jeffrey S. Gee

  • Limited latitudinal mantle plume motion for the Louisville hotspot

    Anthony A. P. Koppers;Toshitsugu Yamazaki;Joerg Geldmacher;Jeffrey S. Gee

  • New 40Ar/39Ar age progression for the Louisville hot spot trail and implications for inter–hot spot motion

    Anthony A. P. Koppers;Anthony A. P. Koppers;Molly D. Gowen;Lauren E. Colwell;Jeffrey S. Gee

  • Lunar paleointensity measurements: Implications for lunar magnetic evolution

    Kristin Lawrence;Catherine Johnson;Catherine Johnson;Lisa Tauxe;Jeff Gee

  • Constraints on the India-Asia Convergence: Paleomagnetic Results from Ninetyeast Ridge

    C.T. Klootwijk;J.S. Gee;J.W. Peirce;G.M. Smith

  • Contribution of induced magnetization to magnetization of seamounts

    J. Gee;H. Staudigel;L. Tauxe

  • Tracking the Late Jurassic apparent (or true) polar shift in U‐Pb‐dated kimberlites from cratonic North America (Superior Province of Canada)

    Dennis V. Kent;Bruce A. Kjarsgaard;Jeffrey S. Gee;Giovanni Muttoni

Frequent Co-Authors

Lisa Tauxe
Lisa Tauxe University of California, San Diego
Dennis V. Kent
Dennis V. Kent Lamont-Doherty Earth Observatory
Jeffrey A. Karson
Jeffrey A. Karson Syracuse University
Hubert Staudigel
Hubert Staudigel University of California, San Diego
Barbara E. John
Barbara E. John University of Wyoming
Michael J. Cheadle
Michael J. Cheadle University of Wyoming
Anthony A. P. Koppers
Anthony A. P. Koppers Oregon State University
Catherine Constable
Catherine Constable University of California, San Diego
Michael J Jackson
Michael J Jackson University of Minnesota
John J. Mahoney
John J. Mahoney University of Hawaii at Manoa

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