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Environmental Sciences

D-Index
39
Citations
6153
World Ranking
8344
National Ranking
384

Overview

Anthony C. Withers is a researcher affiliated with the University of Western Ontario in Canada. Their work primarily spans the fields of Earth and Planetary Sciences as well as Materials Science, with a notable focus on Geophysics and Ceramics and Composites among the subfields of study.

Their research covers a range of topics centered on geological and geochemical analysis and high-pressure geophysics and materials. Other main areas of their work include glass properties and applications, material dynamics and properties, earthquake and tectonic studies, methane hydrates and related phenomena, and aspects of quantum, superfluid, helium dynamics.

Withers has contributed several papers published in reputable scientific journals. Recent papers include:

  • "A rapid-quench technique for multi-anvil high-pressure-temperature experiments" (2020) published in Review of Scientific Instruments
  • "Viscosity of anhydrous and hydrous peridotite melts" (2023) published in Chemical Geology
  • "Dissolution mechanisms of water in depolymerized silicate (peridotitic) glasses based on infrared spectroscopy" (2022) published in Geochimica et Cosmochimica Acta
  • "Rapid-quenching of high-pressure depolymerized hydrous silicate (peridotitic) glasses" (2022) published in Journal of Non-Crystalline Solids
  • "A simplified rapid-quench multi-anvil technique" (2021) published in Review of Scientific Instruments

Frequent coauthors in Withers' collaborations include Hongzhan Fei, Tomoo Katsura, Dmitry Bondar, Hélène Bureau, and Tristan Pausch.

Their research outputs have appeared often in journals such as Review of Scientific Instruments, Geochimica et Cosmochimica Acta, American Mineralogist, Chemical Geology, and Journal of Non-Crystalline Solids.

Best Publications

  • Deep global cycling of carbon constrained by the solidus of anhydrous, carbonated eclogite under upper mantle conditions

    Rajdeep Dasgupta;Marc M. Hirschmann;Anthony C. Withers

  • Carbon-dioxide-rich silicate melt in the Earth's upper mantle

    Rajdeep Dasgupta;Ananya Mallik;Kyusei Tsuno;Anthony C. Withers

  • Dehydration melting of nominally anhydrous mantle: The primacy of partitioning

    Marc M. Hirschmann;Travis Tenner;Cyril Aubaud;Cyril Aubaud;A.C. Withers

  • Trace element partitioning between garnet lherzolite and carbonatite at 6.6 and 8.6 GPa with applications to the geochemistry of the mantle and of mantle-derived melts

    Rajdeep Dasgupta;Rajdeep Dasgupta;Marc M. Hirschmann;William F. McDonough;Marc Spiegelman

  • Storage capacity of H2O in nominally anhydrous minerals in the upper mantle

    Marc M. Hirschmann;Marc M. Hirschmann;Cyril Aubaud;Anthony C. Withers

  • Aluminum coordination and the densification of high-pressure aluminosilicate glasses

    Jeffrey R. Allwardt;Jeffrey R. Allwardt;Jonathan F. Stebbins;Burkhard C. Schmidt;Daniel J. Frost

  • The Contribution of Leaves from Different Levels within a Tomato Crop to Canopy Net Photosynthesis: An Experimental Examination of Two Canopy Models

    Unknown

  • The beginnings of hydrous mantle wedge melting

    Christy B. Till;Timothy L. Grove;Anthony C. Withers

  • Hydrogen partitioning between nominally anhydrous upper mantle minerals and melt between 3 and 5 GPa and applications to hydrous peridotite partial melting

    Travis J. Tenner;Marc M. Hirschmann;Anthony C. Withers;Richard L. Hervig

  • Intercalibration of FTIR and SIMS for hydrogen measurements in glasses and nominally anhydrous minerals

    Cyril Aubaud;Cyril Aubaud;Anthony C. Withers;Marc M. Hirschmann;Yunbin Guan

  • Solubility of molecular hydrogen in silicate melts and consequences for volatile evolution of terrestrial planets

    M.M. Hirschmann;A.C. Withers;P. Ardia;N.T. Foley

  • The OH content of pyrope at high pressure

    Anthony C. Withers;Bernard J. Wood;Michael R. Carroll

  • Calibration of infrared spectroscopy by elastic recoil detection analysis of H in synthetic olivine

    Anthony C. Withers;Hélène Bureau;Caroline Raepsaet;Marc M. Hirschmann

  • The Greenhouse Effect: Acclimation of Tomato Plants Growing in High CO2, Photosynthesis and Ribulose-1, 5-Bisphosphate Carboxylase Protein

    Unknown

  • Temperature-induced changes in the NIR spectra of hydrous albitic and rhyolitic glasses between 300 and 100 K

    A. C. Withers;H. Behrens

  • Effect of structural transitions on properties of high-pressure silicate melts: 27Al NMR, glass densities, and melt viscosities

    Jeffrey R. Allwardt;Jeffrey R. Allwardt;Jonathan F. Stebbins;Hidenori Terasaki;Lin Shu Du;Lin Shu Du

  • Ventilation of CO2 from a reduced mantle and consequences for the early Martian greenhouse

    Marc M. Hirschmann;Anthony C. Withers

  • Solubility of CH4 in a synthetic basaltic melt, with applications to atmosphere–magma ocean–core partitioning of volatiles and to the evolution of the Martian atmosphere

    P. Ardia;M.M. Hirschmann;A.C. Withers;B.D. Stanley

  • CO2 solubility in Martian basalts and Martian atmospheric evolution

    Ben D. Stanley;Marc M. Hirschmann;Anthony C. Withers

  • Rutile/TiO 2 II phase equilibria

    Anthony C. Withers;Anthony C. Withers;Eric J. Essene;Youxue Zhang

  • H2O storage capacity of olivine at 5–8 GPa and consequences for dehydration partial melting of the upper mantle

    P. Ardia;M.M. Hirschmann;A.C. Withers;T.J. Tenner;T.J. Tenner

  • H 2 O storage capacity of olivine and low-Ca pyroxene from 10 to 13 GPa: consequences for dehydration melting above the transition zone

    Travis J. Tenner;Marc M. Hirschmann;Anthony C. Withers;Paola Ardia

Frequent Co-Authors

Marc M. Hirschmann
Marc M. Hirschmann University of Minnesota
Eric J. Essene
Eric J. Essene University of Michigan–Ann Arbor
Jonathan F. Stebbins
Jonathan F. Stebbins Stanford University
Rajdeep Dasgupta
Rajdeep Dasgupta Rice University
Daniel J. Frost
Daniel J. Frost University of Bayreuth
Basil Tikoff
Basil Tikoff University of Wisconsin–Madison
Tomoo Katsura
Tomoo Katsura University of Bayreuth
Renata M. Wentzcovitch
Renata M. Wentzcovitch Columbia University
David L. Kohlstedt
David L. Kohlstedt University of Minnesota

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