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Phase transitions beyond post-perovskite in NaMgF3 to 160 GPa.


ABSTRACT: Neighborite, NaMgF3, is used as a model system for understanding phase transitions in ABX3 systems (e.g., MgSiO3) at high pressures. Here we report diamond anvil cell experiments that identify the following phases in NaMgF3 with compression to 162 GPa: NaMgF3 (perovskite) ? NaMgF3 (post-perovskite) ? NaMgF3 (Sb2S3-type) ? NaF (B2-type) + NaMg2F5 (P2 1 /c) ? NaF (B2) + MgF2 (cotunnite-type). Our results demonstrate the existence of an Sb2S3-type post-post-perovskite ABX3 phase. We also experimentally demonstrate the formation of the P2 1 /c AB2X5 phase which has been proposed theoretically to be a common high-pressure phase in ABX3 systems. Our study provides an experimental observation of the full sequence of phase transitions from perovskite to post-perovskite to post-post-perovskite followed by 2-stage breakdown to binary compounds. Notably, a similar sequence of transitions is predicted to occur in MgSiO3 at ultrahigh pressures, where it has implications for the mineralogy and dynamics in the deep interior of large, rocky extrasolar planets.

SUBMITTER: Dutta R 

PROVIDER: S-EPMC6765287 | biostudies-literature | 2019 Sep

REPOSITORIES: biostudies-literature

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Phase transitions beyond post-perovskite in NaMgF<sub>3</sub> to 160 GPa.

Dutta Rajkrishna R   Greenberg Eran E   Prakapenka Vitali B VB   Duffy Thomas S TS  

Proceedings of the National Academy of Sciences of the United States of America 20190910 39


Neighborite, NaMgF<sub>3,</sub> is used as a model system for understanding phase transitions in ABX<sub>3</sub> systems (e.g., MgSiO<sub>3</sub>) at high pressures. Here we report diamond anvil cell experiments that identify the following phases in NaMgF<sub>3</sub> with compression to 162 GPa: NaMgF<sub>3</sub> (perovskite) → NaMgF<sub>3</sub> (post-perovskite) → NaMgF<sub>3</sub> (Sb<sub>2</sub>S<sub>3</sub>-type) → NaF (B2-type) + NaMg<sub>2</sub>F<sub>5</sub> (<i>P2</i> <sub><i>1</i></sub>  ...[more]

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