World's Best Scientists 2026 revealed!

D-Index & Metrics

Earth Science

D-Index
49
Citations
8619
World Ranking
3617
National Ranking
1429

Overview

What is he best known for?

The fields of study he is best known for:

  • Seismology
  • Optics
  • Paleontology

His primary areas of study are Seismology, Induced seismicity, Seismic moment, Shear stress and Shear. He studies Tectonics, a branch of Seismology. The concepts of his Tectonics study are interwoven with issues in Isotropy and Seismic hazard.

His Seismic moment research includes themes of Magnitude, Pore water pressure and Fracture. His Fracture research incorporates elements of Seismic wave and Scaling. His Shear research incorporates themes from Frequency spectrum, Stress drop and Crust.

His most cited work include:

  • Maximum magnitude earthquakes induced by fluid injection (346 citations)
  • Seismic moments and volume changes (205 citations)
  • On relating apparent stress to the stress causing earthquake fault slip (189 citations)

What are the main themes of his work throughout his whole career to date?

Arthur F. McGarr focuses on Seismology, Induced seismicity, Seismic moment, Seismic hazard and Geodesy. His Seismology study incorporates themes from Shear, Magnitude and Crust. He works mostly in the field of Induced seismicity, limiting it down to topics relating to Geothermal gradient and, in certain cases, Petrology.

He has researched Seismic moment in several fields, including Point source, Rock mass classification, Slip rate and Tensor. His study looks at the relationship between Seismic hazard and fields such as Moment magnitude scale, as well as how they intersect with chemical problems. His study on Lithosphere is often connected to Volume change as part of broader study in Tectonics.

He most often published in these fields:

  • Seismology (74.47%)
  • Induced seismicity (30.85%)
  • Seismic moment (18.09%)

What were the highlights of his more recent work (between 2013-2020)?

  • Seismology (74.47%)
  • Induced seismicity (30.85%)
  • Seismic hazard (17.02%)

In recent papers he was focusing on the following fields of study:

His scientific interests lie mostly in Seismology, Induced seismicity, Seismic hazard, Natural and Fluid injection. Arthur F. McGarr interconnects Geological survey and Structural basin in the investigation of issues within Seismology. His Induced seismicity study combines topics in areas such as Geothermal gradient and Tectonics.

Arthur F. McGarr usually deals with Geothermal gradient and limits it to topics linked to Petrology and Pore water pressure, Seismic moment and Rock mass classification. In his research on the topic of Tectonics, Lithosphere and Shear is strongly related with Isotropy. His Natural research is multidisciplinary, relying on both Geophysics, Tectonophysics, Remotely triggered earthquakes, Seismotectonics and Seismic hazard assessment.

Between 2013 and 2020, his most popular works were:

  • Maximum magnitude earthquakes induced by fluid injection (346 citations)
  • Coping with earthquakes induced by fluid injection (136 citations)
  • Analysis of induced seismicity in geothermal reservoirs – An overview (114 citations)

In his most recent research, the most cited papers focused on:

  • Optics
  • Seismology
  • Paleontology

Arthur F. McGarr mainly focuses on Seismology, Induced seismicity, Geothermal gradient, Tectonics and Hazard. Arthur F. McGarr combines subjects such as Structural basin and Enhanced oil recovery with his study of Seismology. His Geothermal gradient research includes elements of Hydraulic fracturing, Pore water pressure, Maximum magnitude and Rock mass classification.

His studies deal with areas such as Shear and Isotropy as well as Tectonics. Arthur F. McGarr integrates many fields, such as Hazard and engineering, in his works. You can notice a mix of various disciplines of study, such as Accident prevention, Waste disposal, Injury control, Oil and gas production and Poison control, in his Fluid injection studies.

Best Publications

  • Maximum magnitude earthquakes induced by fluid injection

    Arthur F. McGarr

  • 40 – Case Histories of Induced and Triggered Seismicity

    Arthur F. McGarr;David Simpson;L. Seeber

  • Seismic moments and volume changes

    A. McGarr

  • Analysis of induced seismicity in geothermal reservoirs – An overview

    Arno Zang;Volker Oye;Philippe Jousset;Nicholas Deichmann

  • On relating apparent stress to the stress causing earthquake fault slip

    A. McGarr

  • Coping with earthquakes induced by fluid injection

    Arthur F. McGarr;Barbara Bekins;Nina Burkardt;James W. Dewey

  • Scaling of ground motion parameters, state of stress, and focal depth

    A. McGarr

  • Attenuation of high‐frequency shear waves in the crust: Measurements from New York State, South Africa, and southern California

    Arthur Frankel;Art McGarr;John Bicknell;Jim Mori

  • 2017 One‐Year Seismic‐Hazard Forecast for the Central and Eastern United States from Induced and Natural Earthquakes

    Mark D. Petersen;Charles S. Mueller;Morgan P. Moschetti;Susan M. Hoover

  • Source parameters of tremors in a deep-level gold mine

    S. M. Spottiswoode;A. McGarr

  • SEA96--A New Predictive Relation for Earthquake Ground Motions in Extensional Tectonic Regimes

    P. Spudich;Joe B. Fletcher;M. Hellweg;J. Boatwright

  • The 2001–Present Induced Earthquake Sequence in the Raton Basin of Northern New Mexico and Southern Colorado

    Justin L. Rubinstein;William L. Ellsworth;Arthur F. McGarr;Harley M. Benz

  • On the State of Lithospheric Stress in the Absence of Applied Tectonic Forces

    A. McGarr

  • Strong ground motion of mine tremors: Some implications for near-source ground motion parameters

    A. McGarr;R. W. E. Green;S. M. Spottiswoode

  • Observations relevant to seismic driving stress, stress drop, and efficiency

    A. McGarr;S. M. Spottiswoode;W. D. Ortlepp

  • Some constraints on levels of shear stress in the crust from observations and theory

    A. McGarr

  • Transmission and reflection of Rayleigh waves at vertical boundaries

    A. McGarr;L. E. Alsop

  • Increasing seismicity in the U. S. midcontinent: Implications for earthquake hazard

    William L. Ellsworth;Andrea L. Llenos;Arthur F. McGarr;Andrew J. Michael

  • Source parameters for aftershocks of the Oroville, California, earthquake

    Jon Fletcher;John Boatwright;Linda Haar;Thomas Hanks

  • Some Comparisons between Mining-induced and Laboratory Earthquakes

    A. McGarr

  • Earthquakes: Radiated Energy and the Physics of Faulting

    Rachel E. Abercrombie;Art McGarr;Giulio Di Toro;Hiroo Kanamori

Frequent Co-Authors

William L. Ellsworth
William L. Ellsworth Stanford University
Charles S. Mueller
Charles S. Mueller United States Geological Survey
Mark D. Petersen
Mark D. Petersen United States Geological Survey
Andrew J. Michael
Andrew J. Michael United States Geological Survey
Justin L. Rubinstein
Justin L. Rubinstein United States Geological Survey
John Langbein
John Langbein United States Geological Survey
John Boatwright
John Boatwright United States Geological Survey
Stephen H. Hickman
Stephen H. Hickman United States Geological Survey
Ernest L. Majer
Ernest L. Majer Lawrence Berkeley National Laboratory
Leonardo Seeber
Leonardo Seeber Lamont-Doherty Earth Observatory

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