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THERMODYNAMIC PROPERTIES OF MgSiO3 POST-PEROVSKITE

机译:MgSiO3后钙钛矿的热力学性质

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摘要

The thermodynamic properties of MgSiO3 post-perovskite are predicted at high pressures and temperatures using the Debye model for the first time. This model combines with ab initio calculations within local density approximation using pseudopotentials and a plane wave basis in the framework of density functional theory, and it takes into account the phononic effects within the quasi-harmonic approximation. It is found that the calculated equation of state of MgSiO3 post-perovskite is in excellent agreement with the latest observed values. Based on the first-principles study and the Debye model, the thermal properties including the Debye temperature, the heat capacity, the thermal expansion, and the entropy are obtained in the whole pressure range from 0 to 150 GPa and temperature range from 0 to 2000 K.
机译:首次使用Debye模型在高压和高温下预测了钙钛矿后MgSiO3的热力学性质。该模型在密度泛函理论的框架内结合使用伪势和平面波基础的局部密度近似中的从头计算,并考虑了准谐波近似中的声子效应。结果发现,钙钛矿后MgSiO3的状态方程与最新观测值非常吻合。基于第一性原理研究和Debye模型,在0至150 GPa的整个压力范围和0至2000的温度范围内获得了包括德拜温度,热容量,热膨胀和熵在内的热性能。 K.

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