Area of research
Geophysics · Electronic, Optical and Magnetic Materials
Research interest
Research focused on Mantle (geology) and Diamond anvil cell, with related work in Planet, Anhydrous, Exoplanet. Notable publications include 'Mineralogical effects on the detectability of the postperovskite boundary', 'Stability of ferrous-iron-rich bridgmanite under reducing midmantle conditions', and 'Stability, metastability, and elastic properties of a dense silica polymorph, seifertite'.
Ultra‐Low Velocity Zones Beneath the Southern Hemisphere Imaged With Double‐Array Stacking of PcP Waveforms
Globally distributed subducted materials along the Earth’s core-mantle boundary: Implications for ultralow velocity zones
Core origin of seismic velocity anomalies at Earth’s core–mantle boundary
A hydrogen-enriched layer in the topmost outer core sourced from deeply subducted water
Reaction between Hydrogen and Ferrous/Ferric Oxides at High Pressures and High Temperatures—Implications for Sub-Neptunes and Super-Earths
Calcium dissolution in bridgmanite in the Earth’s deep mantle
Atomic-scale mixing between MgO and H2O in the deep interiors of water-rich planets
Large H <sub>2</sub> O solubility in dense silica and its implications for the interiors of water-rich planets
Low Melting Temperature of Anhydrous Mantle Materials at the Core‐Mantle Boundary
Dehydration of δ-AlOOH in Earth’s Deep Lower Mantle
Possible H2O storage in the crystal structure of CaSiO3 perovskite
Stability of ferrous-iron-rich bridgmanite under reducing midmantle conditions
Intercomparison of the gold, platinum, and MgO pressure scales up to 140 GPa and 2500 K
Thermal expansion of SiC at high pressure‐temperature and implications for thermal convection in the deep interiors of carbide exoplanets
Phase transition and equation of state of dense hydrous silica up to 63 GPa
The postspinel boundary in pyrolitic compositions determined in the laser‐heated diamond anvil cell
Stability, metastability, and elastic properties of a dense silica polymorph, seifertite
Mineralogical effects on the detectability of the postperovskite boundary