Tracht change of groundmass pyroxene crystals in decompression experiments
Author:
Affiliation:
1. Department of Geology and Mineralogy, Division of Earth and Planetary Sciences, Graduate School of Science, Kyoto University
2. Department of Earth Science, Graduate School of Science, Tohoku University
Publisher
Japan Association of Mineralogical Sciences
Subject
Geology,Geophysics
Link
https://www.jstage.jst.go.jp/article/jmps/117/1/117_211219/_pdf
Reference26 articles.
1. Caricchi, L., Burlini, L., Ulmer, P., Gerya, T., et al (2007) Non–Newtonian rheology of crystal–bearing magmas and implications for magma ascent dynamics. Earth and Planetary Science Letters, 264, 402–419.
2. Cashman, K. and Blundy, J. (2000) Degassing and crystallization of ascending andesite and dacite. Philosophical Transactions of the Royal Society of London A: Mathematical, Physical and Engineering Sciences, 358, 1487–1513.
3. Cassidy, M., Manga, M., Cashman, K. and Bachmann, O. (2018) Controls on explosive–effusive volcanic eruption styles. Nature Communications, 9: 2839. doi: 10.1038/s41467–018–05293–3.
4. Castro, J.M., Cashman, K.V. and Manga, M. (2003) A technique for measuring 3D crystal–size distributions of prismatic microlites in obsidian. American Mineralogist, 88, 1230–1240.
5. Castro, J.M. and Gardner, J.E. (2008) Did magma ascent rate control the explosive–effusive transition at the Inyo volcanic chain, California? Geology, 36, 279–282.
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1. Crystal habit (tracht) of groundmass pyroxene crystals recorded magma ascent paths during the 2011 Shinmoedake eruption;American Mineralogist;2024-02-01
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