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Structure and dynamics of glassy and liquid materials under ambient and extreme conditions. Materials of interest include oxide and chalcogenide glasses, water and aqueous solutions. Methods include neutron and x-ray diffraction combined with high pressures and/or high temperatures (e.g., Paris-Edinburgh press, aerodynamic levitation). Results are combined with those obtained from other experimental methods (e.g., NMR & Raman spectroscopy) to build realistic and informative atomic models to describe a material's structure and its structure-related properties via molecular dynamics simulations. Currently working on the structural changes in multi-component oxides under pressure, and the vibrational density of states of glass.
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PHYSICAL REVIEW Bno. 14 (2023)
Journal of Physics: Condensed Matterno. 27 (2023): 274002-274002
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Philip S. Salmon, Gregory S. Moody, YoshikiIshii, Keiron J. Pizzey,Annalisa Polidori,Mathieu Salanne,Anita Zeidler, Michela Buscemi,Henry E. Fischer, Craig L. Bull,Stefan Klotz,Richard Weber,
Journal of Non-Crystalline Solids: X (2023): 100154-100154
Journal of physics. Condensed matter : an Institute of Physics journalno. 27 (2023)
Physical Review Materialsno. 12 (2022)
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