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Effect of pressure cycling and compression rate on the bcc-hcp transition in an FeNi alloy

Effect of pressure cycling and compression rate on the bcc-hcp transition in an FeNi alloy

by Charlie Smith | Nov 22, 2025 | Publications

Zhang, Yanyao, Sébastien Merkel, Anna Celeste, Silvia Pandolfi, Matthew Ricks, Stella Chariton, Vitali B. Prakapenka, Arianna E. Gleason, and Wendy L. Mao. “Effect of pressure cycling and compression rate on the bcc-hcp transition in an FeNi alloy.” Applied Physics...
Enhanced Ising superconductivity in a unicompositional bulk 4Hb-TaS2 superlattice via pressure

Enhanced Ising superconductivity in a unicompositional bulk 4Hb-TaS2 superlattice via pressure

by Charlie Smith | Nov 18, 2025 | Publications

Yan, L., Gao, J., Zhang, Z. et al. Enhanced Ising superconductivity in a unicompositional bulk 4Hb-TaS2 superlattice via pressure. npj Quantum Mater. 10, 104 (2025).
Effect of multiple calcination cycles on CO2 capture efficiency during carbonation of MgO in a mineral looping process

Effect of multiple calcination cycles on CO2 capture efficiency during carbonation of MgO in a mineral looping process

by Charlie Smith | Nov 10, 2025 | Publications, Science Highlights

Tajuelo Rodriguez, E., Anovitz, L.M., Adapa, S., Yuan, Ke, Hensley, D., Chung, D-Y., Boebinger, M.G., Stack, A.G., Weber, J. Effect of multiple calcination cycles on CO2 capture efficiency during carbonation of MgO in a mineral looping process. Sci Rep 15, 39193...
In situ deformation of antigorite-olivine two-phase mixtures: Implications for dynamics and seismic anisotropy in the mantle wedge

In situ deformation of antigorite-olivine two-phase mixtures: Implications for dynamics and seismic anisotropy in the mantle wedge

by Charlie Smith | Nov 8, 2025 | Publications, Science Highlights

Hurlow, Rose, Wenhao Su, Wen-Yi Zhou, Feng Lin, Lowell Miyagi, Timothy Officer, Tony Yu et al. “In situ deformation of antigorite-olivine two-phase mixtures: Implications for dynamics and seismic anisotropy in the mantle wedge.” Earth and Planetary Science Letters 672...
Building wet planets through high-pressure magma–hydrogen reactions

Building wet planets through high-pressure magma–hydrogen reactions

by Charlie Smith | Oct 29, 2025 | Publications, Science Highlights

Horn, H.W., Vazan, A., Chariton, S. Prakapenka, V., Shim, S-H.,  Building wet planets through high-pressure magma–hydrogen reactions. Nature 646, 1069–1074 (2025).
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