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Earth Science

D-Index
47
Citations
10693
World Ranking
3936
National Ranking
208

Overview

Gregory M. Yaxley is affiliated with the Australian National University in Australia and is actively engaged in research within Earth and Planetary Sciences. Their scholarly work primarily spans the areas of Geophysics, Artificial Intelligence, Mechanics of Materials, Geochemistry and Petrology, and Environmental Engineering.

The scientist's research covers a range of topics including Geological and Geochemical Analysis, High-pressure Geophysics and Materials, earthquake and tectonic studies, Geochemistry and Geologic Mapping, Hydrocarbon exploration and reservoir analysis, CO2 Sequestration and Geologic Interactions, as well as Geophysical and Geoelectrical Methods.

Notable recent papers authored or co-authored by Yaxley include Carbonatites: Classification, Sources, Evolution, and Emplacement (2022) published in Annual Review of Earth and Planetary Sciences, Evolution of Carbonatite Magmas in the Upper Mantle and Crust (2021) in Elements, and several other contributions that explore mantle processes and geochemical properties in prominent journals.

Frequent collaborators in research projects include A. L. Jaques, Z. J. Sudholz, Stephen Foley, Karol Czarnota, and C. Frigo. This cooperation highlights a sustained network in advancing studies related to mineralogy, petrology, and geophysics.

Yaxley has published multiple times in leading venues such as Contributions to Mineralogy and Petrology, Lithos, Geochemistry Geophysics Geosystems, Ore Geology Reviews, and Geochimica et Cosmochimica Acta. These journals are significant platforms in the fields of petrology, geochemistry, and Earth science.

  • Geological and Geochemical Analysis
  • High-pressure geophysics and materials
  • Earthquake and tectonic studies
  • Geochemistry and geologic mapping
  • Hydrocarbon exploration and reservoir analysis
  • CO2 sequestration and geologic interactions
  • Geophysical and geoelectrical methods

  • Carbonatites: Classification, Sources, Evolution, and Emplacement (2022), Annual Review of Earth and Planetary Sciences
  • Evolution of Carbonatite Magmas in the Upper Mantle and Crust (2021), Elements

  • A. L. Jaques
  • Z. J. Sudholz
  • Stephen Foley
  • Karol Czarnota
  • C. Frigo

  • Contributions to Mineralogy and Petrology
  • Lithos
  • Geochemistry Geophysics Geosystems
  • Ore Geology Reviews
  • Geochimica et Cosmochimica Acta

Best Publications

  • The Amount of Recycled Crust in Sources of Mantle-Derived Melts

    Alexander V. Sobolev;Albrecht W. Hofmann;Dmitry V. Kuzmin;Gregory M. Yaxley

  • SIMS determination of trace element partition coefficients between garnet, clinopyroxene and hydrous basaltic liquids at 2–7.5 GPa and 1080–1200°C

    TH Green;Jon D Blundy;J Adam;GM Yaxley

  • Evidence for carbonatite metasomatism in spinel peridotite xenoliths from western Victoria, Australia

    Gregory M. Yaxley;Anthony J. Crawford;David H. Green

  • Carbonatite metasomatism in the southeastern Australian lithosphere

    Gregory M. Yaxley;David H. Green;Vadim Kamenetsky

  • The composition of near-solidus melts of peridotite in the presence of CO2 and H2O between 40 and 60 kbar

    Stephen Foley;Gregory Yaxley;Anja Rosenthal;Stephan Buhre

  • The South Patagonian batholith: 150 my of granite magmatism on a plate margin

    Francisco Herve;Robert J Pankhurst;Christopher Fanning;Mauricio Calderon

  • Phase relations of carbonate-bearing eclogite assemblages from 2.5 to 5.5 GPa: implications for petrogenesis of carbonatites

    Gregory M. Yaxley;Gerhard P. Brey

  • Experimental study of the phase and melting relations of homogeneous basalt+peridotite mixtures and implications for the petrogenesis of flood basalts

    Gregory M. Yaxley

  • Carbonatites: Classification, Sources, Evolution, and Emplacement

    Unknown

  • Prediction of siderophile element metal-silicate partition coefficients to 20 GPa and 2800°C: the effects of pressure, temperature, oxygen fugacity, and silicate and metallic melt compositions

    Unknown

  • Experimental demonstration of refractory carbonate-bearing eclogite and siliceous melt in the subduction regime

    Gregory M. Yaxley;David H. Green

  • Continent Formation in the Archean and Chemical Evolution of the Cratonic Lithosphere: Melt-Rock Reaction Experiments at 3-4 GPa and Petrogenesis of Archean Mg-Diorites (Sanukitoids)

    Robert Rapp;Robert Rapp;Robert Rapp;Marc Norman;D Laporte;D Laporte;Gregory Yaxley

  • Magnesium stable isotope composition of Earth's upper mantle

    Monica R. Handler;Joel A. Baker;Martin Schiller;Vickie C. Bennett

  • Primary magmas and mantle temperatures

    David H. Green;Trevor J. Falloon;Trevor J. Falloon;Stephen M. Eggins;Gregory M. Yaxley

  • Phase Relations and Melting of Anhydrous K-bearing Eclogite from 1200 to 1600°C and 3 to 5 GPa

    Carl Spandler;Gregory Yaxley;David Green;Anja Rosenthal

  • An Experimental Study of Carbonated Eclogite at 3·5–5·5 GPa—Implications for Silicate and Carbonate Metasomatism in the Cratonic Mantle

    Ekaterina S. Kiseeva;Gregory M. Yaxley;Jörg Hermann;Konstantin D. Litasov;Konstantin D. Litasov

  • Solidus of alkaline carbonatite in the deep mantle

    Konstantin D. Litasov;Anton Shatskiy;Eiji Ohtani;Gregory M. Yaxley

  • Experimental Study of the Influence of Water on Melting and Phase Assemblages in the Upper Mantle

    David H. Green;David H. Green;William O. Hibberson;Anja Rosenthal;Anja Rosenthal;István János Kovács

  • Melting and Phase Relations of Carbonated Eclogite at 9–21 GPa and the Petrogenesis of Alkali-Rich Melts in the Deep Mantle

    Ekaterina S. Kiseeva;Konstantin D. Litasov;Konstantin D. Litasov;Gregory M. Yaxley;Eiji Ohtani

  • Evidence for subduction at 3.8 Ga: Geochemistry of arc-like metabasalts from the southern edge of the Isua Supracrustal Belt

    Frances Jenner;Victoria Bennett;Allen Nutman;Clark R L Friend

  • Glasses in mantle xenoliths from western Victoria, Australia, and their relevance to mantle processes

    Gregory M. Yaxley;Vadim Kamenetsky;Vadim Kamenetsky;David H. Green;Trevor J. Falloon

  • Carbonate–silicate liquid immiscibility in the mantle propels kimberlite magma ascent

    Vadim S. Kamenetsky;Gregory M. Yaxley

Frequent Co-Authors

Vadim S. Kamenetsky
Vadim S. Kamenetsky Institute of Oceanology, Chinese Academy of Sciences
David H. Green
David H. Green University of Tasmania
Marc D. Norman
Marc D. Norman Australian National University
Alan B. Woodland
Alan B. Woodland Goethe University Frankfurt
Andrew J. Berry
Andrew J. Berry Australian National University
Konstantin D. Litasov
Konstantin D. Litasov Institute for High Pressure Physics
Carl Spandler
Carl Spandler University of Adelaide
Richard Armstrong
Richard Armstrong Australian National University
Stephen F. Foley
Stephen F. Foley Macquarie University
Alexander V. Sobolev
Alexander V. Sobolev Grenoble Alpes University

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