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Publication: On the irreversibility of the pressure-induced phase transition of quartz and the relation between three hypothetical post-quartz phases

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Title On the irreversibility of the pressure-induced phase transition of quartz and the relation between three hypothetical post-quartz phases
Authors/Editors* C. Campana, M. H. Muser, J. S. Tse, D. Herzbach, and P. Schoffel
Where published* Phys. Rev. B
How published* None
Year* 2004
Volume 70
Number 224101
Pages 1-6
Publisher xxxxx
Keywords
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Abstract
Our atomistic computer simulations mainly based on classical force fields suggest that the pressure-induced transition from quartz to quartz II at 21 GPa is irreversible. While quartz II is ferroelastic in principle, the transition itself is coelastic, as the shape of the newly formed crystal is determined by the handedness of -quartz. Upon releasing the pressure, our model quartz II remains stable down to 5 GPa, where it undergoes an isosymmetric transformation into a less dense polymorph. If the classical force field model of quartz II is compressed quickly to 50 GPa, a yet different post-quartz polymorph results, which can probably best be described as an incommensurate modulation of the quartz II structure. We discuss the equation of state and the thermomechanical stability of all four phases. One of the post-quartz phases can be switched elastically by shear between two symmetrically equivalent shapes; however, -quartz appears as an intermittent phase.
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