Compressional wave velocity for iron hydrides to 100 gigapascals via picosecond acoustics
Author:
Funder
Japan Society for the Promotion of Science
Publisher
Springer Science and Business Media LLC
Subject
Geochemistry and Petrology,General Materials Science
Link
https://link.springer.com/content/pdf/10.1007/s00269-022-01192-8.pdf
Reference58 articles.
1. Akahama Y, Kawamura H (2004) High-pressure Raman spectroscopy of diamond anvils to 250 GPa: method for pressure determination in the multimegabar pressure range. J Appl Phys 96:3748–3751
2. Antonangeli D, Ohtani E (2015) Sound velocity of hcp-Fe at high pressure: experimental constraints, extrapolations and comparison with seismic models. Prog Earth Planet Sci 2:3
3. Antonov VE, Cornell K, Fedotov VK, Kolesnikov AI, Ponyatovsky EG, Shiryaev VI, Wipf H (1998) Neutron diffraction investigation of the dhcp and hcp iron hydrides and deuterides. J Alloy Compd 264:214–222
4. Badding JV, Hemley RJ, Mao HK (1991) High-pressure chemistry of hydrogen in metals: in situ study of iron hydride. Science 253:421–424
5. Bazhanova ZG, Oganov AR, Gianola O (2012) Fe–C and Fe–H systems at pressures of the Earth’s inner core. Phys Usp 55:489–497
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