arXiv · 1804.02616
Anharmonicity-induced isostructural phase transition of Zirconium under pressure
Abstract
We have performed a detailed x-ray diffraction structural study of Zr under pressure and unambiguously identify the existence of a first-order isostructural bcc-to-bcc phase transition near 58 GPa. First-principles quantum molecular dynamics lattice dynamics calculations support the existence of this phase transition, in excellent agreement with experimental results, triggered by anharmonic effects. Our results highlight the potential ubiquity of anharmonically driven isostructural transitions within the periodic table under pressure and calls for follow-up experimental and theoretical studies.
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Elissaios Stavrou, Lin H. Yang, Per Soderlind, Daniel Aberg, Harry B. Radousky, Michael R. Armstrong, Jonathan L. Belof, Martin Kunz, Eran Greenberg, Vitali B. Prakapenka, David A. Young. 2018-04-08. Anharmonicity-induced isostructural phase transition of Zirconium under pressure. https://doi.org/10.1103/physrevb.98.220101
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