Cite this article:
Lin Zhang, Ying-Hua Li, Xue-Mei Li, Zu-Gen Zhang, Xiang-Ping Ye, Ling-Cang Cai. γ-and α-Ce phase diagram: First-principle calculationJ. Chin. Phys. B, 2016, 25(3): 033102.
| Lin Zhang, Ying-Hua Li, Xue-Mei Li, Zu-Gen Zhang, Xiang-Ping Ye, Ling-Cang Cai. γ-and α-Ce phase diagram: First-principle calculationJ. Chin. Phys. B, 2016, 25(3): 033102. |
γ-and α-Ce phase diagram: First-principle calculation
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Abstract
Controversies about the phase diagram for the isostructural γ ↔α phase transition of cerium have long been standing out for several decades. To seek insight into the problems, high-precision equations of state (EOS) for γ-and α-cerium are constructed based on first-principle calculation. Versus previous works, the strong anharmonic effects of ion vibration and the variation of magnetism of γ-cerium are stressed. The new EOS generally agrees well with experimental data regarding thermodynamics, phase diagrams, and phase transitions. However, new EOS predicts that another part of phase boundary in pressure-temperature space may exist except for the commonly known boundary. In addition, the well-known critical point seems to be a critical point for γ-cerium to translate from a stable state to an unstable state. -
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