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Phase transition kinetics of superionic H2O ice phases revealed by Megahertz X-ray free-electron laser-heating experiments

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Abstract
H2O transforms to two forms of superionic (SI) ice at high pressures and temperatures, which contain highly mobile protons within a solid oxygen sublattice. Yet the stability field of both phases remains debated. Here, we present the results of an ultrafast X-ray heating study utilizing MHz pulse trains produced by the European X-ray Free Electron Laser to create high temperature states of H2O, which were probed using X-ray diffraction during dynamic cooling. We confirm an isostructural transition during heating in the 26-69 GPa range, consistent with the formation of SI-bcc. In contrast to prior work, SI-fcc was observed exclusively above ~50 GPa, despite evidence of melting at lower pressures. The absence of SI-fcc in lower pressure runs is attributed to short heating timescales and the pressure-temperature path induced by the pump-probe heating scheme in which H2O was heated above its melting temperature before the observation of quenched crystalline states, based on the earlier theoretical prediction that SI-bcc nucleates more readily from the fluid than SI-fcc. Our results may have implications for the stability of SI phases in ice-rich planets, for example during dynamic freezing, where the preferential crystallization of SI-bcc may result in distinct physical properties across mantle ice layers. © The Author(s) 2024.
Author(s)
Husband, R.J.Liermann, H.P.McHardy, J.D.McWilliams, R.S.Goncharov, A.F.Prakapenka, V.B.Edmund, E.Chariton, S.Konôpková, Z.Strohm, C.Sanchez-Valle, C.Frost, M.Andriambariarijaona, L.Appel, K.Baehtz, C.Ball, O.B.Briggs, R.Buchen, J.Cerantola, V.Choi, J.Coleman, A.L.Cynn, H.Dwivedi, A.Graafsma, H.Hwang, HuijeongKoemets, E.Laurus, T.Lee, Y.Li, X.Marquardt, H.Mondal, A.Nakatsutsumi, M.Ninet, S.Pace, E.Pepin, C.Prescher, C.Stern, S.Sztuk-Dambietz, J.Zastrau, U.McMahon, M.I.
Issued Date
2024-09
Type
Article
DOI
10.1038/s41467-024-52505-0
URI
https://scholar.gist.ac.kr/handle/local/9346
Publisher
Nature Research
Citation
Nature Communications, v.15, no.1
ISSN
2041-1723
Appears in Collections:
Department of Environment and Energy Engineering > 1. Journal Articles
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