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Stability limits and transformation pathways of α-quartz under high pressure.

Authors :
Hu, Q. Y.
Shu, J.-F.
Yang, W. G.
Park, C.
Chen, M. W.
Fujita, T.
Mao, H.-K.
Sheng, H. W.
Source :
Physical Review B. Mar2017, Vol. 95 Issue 10, p1-1. 1p.
Publication Year :
2017

Abstract

Ubiquitous on Earth, α-quartz plays an important role in modern science and technology. However, despite extensive research in the past, the mechanism of the polymorphic transitions of α-quartz at high pressures remains poorly understood. Here, combining in situ single-crystal x-ray diffraction experiment and advanced ab initio modeling, we report two stability limits and competing transition pathways of α-quartz under high pressure. Under near-equilibrium compression conditions at room temperature, α-quartz transits to a new P2/c silica phase via a structural intermediate. If the thermally activated transition is kinetically suppressed, the ultimate stability of α-quartz is controlled by its phonon instability and α-quartz collapses into a different crystalline phase. Our studies reveal that pressure-induced solid-state transformation of α-quartz undergoes a succession of structural stability limits, due to thermodynamic and mechanical catastrophes, and exhibits a hierarchy of transition pathways contingent upon kinetic conditions. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
24699950
Volume :
95
Issue :
10
Database :
Academic Search Index
Journal :
Physical Review B
Publication Type :
Academic Journal
Accession number :
122657287
Full Text :
https://doi.org/10.1103/PhysRevB.95.104112