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Earth Science

D-Index
32
Citations
3602
World Ranking
8721
National Ranking
408

Overview

Graham Heinson is affiliated with the University of Adelaide in Australia and conducts research primarily within the field of Earth and Planetary Sciences. Their work spans several subfields including Geophysics, Ocean Engineering, Artificial Intelligence, Geology, and Mechanics of Materials.

The main research topics covered by their publications include:

  • Geophysical and Geoelectrical Methods
  • Geochemistry and Geologic Mapping
  • Geological and Geophysical Studies
  • Geophysical Methods and Applications
  • Seismic Waves and Analysis
  • Geological and Geochemical Analysis
  • Earthquake and Tectonic Studies

Some of their recent papers are:

  • Lower crustal resistivity signature of an orogenic gold system, 2021, Scientific Reports
  • AusLAMP 3D MT imaging of an intracontinental deformation zone, Musgrave Province, Central Australia, 2020, Earth Planets and Space
  • Lithospheric conductors reveal source regions of convergent margin mineral systems, 2022, Scientific Reports
  • Crustal magnetotelluric imaging of a Paleoproterozoic graphitic suture zone, Curnamona Province, Australia, 2021, Gondwana Research
  • A global magnetotelluric graphite type locality: Multi-decade, multi-scale studies of the Eyre Peninsula anomaly, 2021, Gondwana Research

Frequent co-authors collaborating with Graham Heinson include:

  • Ben Kay
  • Stephan Thiel
  • Goran Boren
  • Ying Liu
  • Jingming Duan

The most common venues for their publications are:

  • Exploration Geophysics
  • Scientific Reports
  • Gondwana Research
  • Tectonophysics
  • Earth Planets and Space

Best Publications

  • Asymmetric Electrical Structure in the Mantle Beneath the East Pacific Rise at 17°S

    R. L. Evans;P. Tarits;A. D. Chave;A. White

  • Magnetotelluric evidence for a deep-crustal mineralizing system beneath the Olympic Dam iron oxide copper-gold deposit, southern Australia

    Graham S. Heinson;Nicholas G. Direen;Rob M. Gill

  • Crustal architecture of the Capricorn Orogen, Western Australia and associated metallogeny

    S.P. Johnson;A.M. Thorne;I.M. Tyler;R.J. Korsch

  • The crustal geophysical signature of a world-class magmatic mineral system

    Graham Heinson;Yohannes Didana;Paul Soeffky;Stephan Thiel

  • Magmatic processes at slow spreading ridges: implications of the RAMESSES experiment at 57° 45′N on the Mid-Atlantic Ridge

    M. C. Sinha;S. C. Constable;C. Peirce;A. White

  • Evidence for accumulated melt beneath the slow–spreading Mid–Atlantic Ridge

    M. C. Sinha;D. A. Navin;L. M. MacGregor;S. Constable

  • Time-lapse magnetotelluric monitoring of an enhanced geothermal system

    Jared R. Peacock;Stephan Thiel;Graham S. Heinson;Peter Reid

  • Upper mantle electrical resistivity structure beneath the central Mariana subduction system

    Tetsuo Matsuno;Nobukazu Seama;Rob L. Evans;Alan D. Chave

  • Detecting subsurface groundwater flow in fractured rock using self-potential (SP) methods

    Fritjof Fagerlund;Graham Heinson

  • Magnetotelluric monitoring of a fluid injection: Example from an enhanced geothermal system

    J. R. Peacock;S. Thiel;P. Reid;G. Heinson

  • The electrical conductivity of the oceanic upper mantle

    Graham Heinson;Steven Constable

  • ELECTROMAGNETIC STUDIES OF THE LITHOSPHERE AND ASTHENOSPHERE

    Graham Heinson

  • Electrical conductors in Archean mantle - Result of plume interaction?

    Stephan Thiel;Graham Heinson

  • Lithospheric reworking at the Proterozoic–Phanerozoic transition of Australia imaged using AusLAMP Magnetotelluric data

    Kate Robertson;Graham Heinson;Stephan Thiel

  • An application of thin-sheet electromagnetic modelling to the Tasman Sea

    G.S. Heinson;F.E.M. Lilley

  • Electrical evidence of continental accretion: Steeply-dipping crustal-scale conductivity contrast

    Kate Selway;Graham Heinson;Martin Hand

  • Magnetotelluric constraints on subduction polarity: Reversing reconstruction models for Proterozoic Australia

    Kate Selway;Martin Hand;Graham S. Heinson;Justin L. Payne;Justin L. Payne

  • Relating permeability and electrical resistivity in fractures using random resistor network models

    Alison Kirkby;Alison Kirkby;Graham Heinson;Lars Krieger

  • Magnetotelluric evidence for serpentinisation in a Cambrian subduction zone beneath the Delamerian Orogen, southeast Australia

    Kate Robertson;David Taylor;Stephan Thiel;Graham Heinson

  • Inverting magnetotelluric responses in a three-dimensional earth using fast forward approximations based on artificial neural networks

    Dennis Conway;Bradley Alexander;Michael King;Graham S. Heinson

  • Crustal imaging of a mobile belt using magnetotellurics: An example of the Fowler Domain in South Australia

    Stephan Thiel;Graham Heinson

  • Detecting Sub-Surface Groundwater Flow in Fractured Rock Using Self- Potential (SP) Methods

    Fritjof Fagerlund;Graham Heinson

Frequent Co-Authors

Steven Constable
Steven Constable University of California, San Diego
Rob Fitzpatrick
Rob Fitzpatrick University of Adelaide
Mark R. Thomas
Mark R. Thomas Commonwealth Scientific and Industrial Research Organisation
Simon P. Holford
Simon P. Holford University of Adelaide
Hisashi Utada
Hisashi Utada University of Tokyo
Kerry Key
Kerry Key Columbia University
Alan D. Chave
Alan D. Chave Woods Hole Oceanographic Institution
Craig T. Simmons
Craig T. Simmons University of Newcastle Australia
Rob L. Evans
Rob L. Evans Woods Hole Oceanographic Institution

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