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Earth Science

D-Index
73
Citations
15164
World Ranking
826
National Ranking
82

Overview

Jeff W. Harris is affiliated with the University of Glasgow in the United Kingdom. Their research primarily spans Earth and Planetary Sciences, with a focus on Geophysics. Additional fields of study include Medicine, specifically within Radiology, Nuclear Medicine and Imaging, and Biomedical Engineering.

The scientist's work covers several specialized topics such as Geological and Geochemical Analysis, High-pressure Geophysics and Materials, and Earthquake and Tectonic Studies. Other topics include Geochemistry and Geologic Mapping, Diamond and Carbon-based Materials Research, Radiomics and Machine Learning in Medical Imaging, and Soil Geostatistics and Mapping.

Recent publications by Jeff W. Harris include:

  • "The lithospheric-to-lower-mantle carbon cycle recorded in superdeep diamonds" (2020, Nature)
  • "Deep carbon through time: Earth's diamond record and its implications for carbon cycling and fluid speciation in the mantle" (2020, Geochimica et Cosmochimica Acta)
  • "Morphology of Monocrystalline Diamond and its Inclusions" (2022, Reviews in Mineralogy and Geochemistry)
  • "Interpretable deep learning of myelin histopathology in age-related cognitive impairment" (2022, Acta Neuropathologica Communications)
  • "Overcoming survival bias in targeting mineral deposits of the future: Towards null and negative tests of the exploration search space, accounting for lack of visibility" (2024, Ore Geology Reviews)

Frequent collaborators in their research include Thomas Stachel, Richard A. Stern, D. Graham Pearson, Matthew F. Hardman, and Mei Yan Lai. These co-authors have contributed to multiple joint publications, reflecting sustained research partnerships.

Jeff W. Harris has published extensively across various scientific venues. Notable publication venues include Geochimica et Cosmochimica Acta, Abstracts with programs - Geological Society of America, Molecular Genetics and Metabolism, Ore Geology Reviews, and Nature.

The subfields addressed in their work emphasize Geophysics, with intersections in Artificial Intelligence, Radiology, Nuclear Medicine and Imaging, Materials Chemistry, and Biomedical Engineering. This interdisciplinary approach reflects both a geoscientific and biomedical interest.

Best Publications

  • Origin of diamonds in old enriched mantle

    S. H. Richardson;S. H. Richardson;J. J. Gurney;A. J. Erlank;J. W. Harris

  • The origin of cratonic diamonds — Constraints from mineral inclusions

    T. Stachel;J.W. Harris

  • Brine inclusions in diamonds: a new upper mantle fluid

    Elad S. Izraeli;Jeffrey W. Harris;Oded Navon

  • Mass-Independent Sulfur of Inclusions in Diamond and Sulfur Recycling on Early Earth

    J. Farquhar;B. A. Wing;K. D. McKeegan;J. W. Harris

  • Kankan diamonds (Guinea) II: lower mantle inclusion parageneses

    Thomas Stachel;Jeff W. Harris;Gerhard P. Brey;Werner Joswig

  • The trace element composition of silicate inclusions in diamonds: a review

    Thomas Stachel;Sonja Aulbach;Gerhard P. Brey;Jeff W. Harris

  • Diamond genesis, mantle fractionations and mantle nitrogen content: a study of δ13C–N concentrations in diamonds

    Pierre Cartigny;Jeff W Harris;Marc Javoy

  • Sulphide inclusions in diamonds from the Koffiefontein kimberlite, S Africa: Constraints on diamond ages and mantle Re-Os systematics

    D.G. Pearson;S.B. Shirey;J.W. Harris;R.W. Carlson

  • Inclusions in sublithospheric diamonds: Glimpses of deep Earth

    Thomas Stachel;Gerhard P. Brey;Jeffrey W. Harris

  • Metasomatic processes in lherzolitic and harzburgitic domains of diamondiferous lithospheric mantle: REE in garnets from xenoliths and inclusions in diamonds

    Thomas Stachel;K.Stephanus Viljoen;Gerhard Brey;Jeff W Harris

  • Archean subduction recorded by Re–Os isotopes in eclogitic sulfide inclusions in Kimberley diamonds

    S.H. Richardson;S.B. Shirey;J.W. Harris;R.W. Carlson

  • Rare and unusual mineral inclusions in diamonds from Mwadui, Tanzania

    Thomas Stachel;Jeff W. Harris;Gerhard P. Brey

  • Eclogitic Diamond Formation at Jwaneng: No Room for a Recycled Component

    Pierre Cartigny;Jeffrey W. Harris;Jeffrey W. Harris;Marc Javoy;Marc Javoy

  • A new model for the evolution of diamond-forming fluids: Evidence from microinclusion-bearing diamonds from Kankan, Guinea

    Y. Weiss;R. Kessel;W.L. Griffin;I. Kiflawi

  • Kankan diamonds (Guinea) I: from the lithosphere down to the transition zone

    Thomas Stachel;Gerhard P. Brey;Jeff W. Harris

  • Diamond Genesis, Seismic Structure, and Evolution of the Kaapvaal-Zimbabwe Craton

    Steven B. Shirey;Jeffrey W. Harris;Stephen H. Richardson;Matthew J. Fouch

  • Isotope evidence for the involvement of recycled sediments in diamond formation

    C. S. Eldridge;W. Compston;I. S. Williams;J. W. Harris

  • Three generations of diamonds from old continental mantle

    S. H. Richardson;J. W. Harris;J. J Gurney

  • Raman barometry of diamond formation

    E.S. Izraeli;J.W. Harris;O. Navon

  • Subduction-related diamonds? — The evidence for a mantle-derived origin from coupled δ13C–δ15N determinations

    Pierre Cartigny;Jeff W Harris;David Phillips;Michel Girard

  • Proceedings of 10th International Kimberlite Conference

    D Graham Pearson;Herman S Grütter;Jeff W Harris;Bruce A Kjarsgaard

Frequent Co-Authors

Thomas Stachel
Thomas Stachel University of Alberta
Fabrizio Nestola
Fabrizio Nestola University of Padua
Pierre Cartigny
Pierre Cartigny Institut de Physique du Globe de Paris
Stephen H. Richardson
Stephen H. Richardson University of Cape Town
Steven B. Shirey
Steven B. Shirey Carnegie Institution for Science
Gerhard P. Brey
Gerhard P. Brey Goethe University Frankfurt
Paolo Nimis
Paolo Nimis University of Padua
John J. Gurney
John J. Gurney University of Cape Town
D.G. Pearson
D.G. Pearson University of Alberta
David Phillips
David Phillips University of Melbourne

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