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兆巴压力下氧化镁的非谐性与相图

Anharmonicity and Phase Diagram of Magnesium Oxide in the Megabar Regime.

作者信息

Soubiran François, Militzer Burkhard

机构信息

Department of Earth and Planetary Science, University of California, Berkeley, California 94720, USA.

École Normale Supérieure de Lyon, Université Lyon 1, Laboratoire de Géologie de Lyon, CNRS UMR 5276, 69364 Lyon Cedex 07, France.

出版信息

Phys Rev Lett. 2020 Oct 23;125(17):175701. doi: 10.1103/PhysRevLett.125.175701.

Abstract

With density functional molecular dynamics simulations, we computed the phase diagram of MgO from 50 to 2000 GPa up to 20 000 K. Via thermodynamic integration (TDI), we derive the Gibbs free energies of the B1, B2, and liquid phases and determine their phase boundaries. With TDI and a pseudo-quasi-harmonic approach, we show that anharmonic effects are important and stabilize the B1 phase in particular. As a result, the B1-B2 transition boundary in the pressure-temperature plane exhibits a steep slope. We predict the B1-B2-liquid triple point to occur at approximately T=10000  K and P=370  GPa, which is higher in pressure than was inferred with quasiharmonic methods alone. We predict the principal shock Hugoniot curve to enter the B2 phase stability domain but only over a very small range of parameters. This may render it difficult to observe this phase with shock experiments because of kinetic effects.

摘要

通过密度泛函分子动力学模拟,我们计算了氧化镁在50至2000吉帕、高达20000开尔文的相图。通过热力学积分(TDI),我们推导了B1、B2和液相的吉布斯自由能,并确定了它们的相界。利用TDI和一种准拟谐波方法,我们表明非谐效应很重要,尤其使B1相稳定。结果,压力-温度平面中的B1-B2转变边界呈现出陡峭的斜率。我们预测B1-B2-液相三相点大约出现在T = 10000 K和P = 370 GPa处,其压力比仅用准谐波方法推断的要高。我们预测主冲击雨贡纽曲线会进入B2相稳定域,但仅在非常小的参数范围内。由于动力学效应,这可能使得通过冲击实验观察到该相变得困难。

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