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Finite-temperature thermophysical properties of fcc-Ca

机译:fcc-Ca的有限温度热物理性质

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At an extreme environment, such as high-temperature and high-pressure, harmonic theory has obvious limitations, where the anharmonic effects are influential in determining bulk properties of the materials. In this regard, necessity for incorporating anharmonicity through vibrational contribution and thermally excited electrons to the total free energy at finite temperatures is illustrated taking an example of divalent fcc-Ca. In this regard, we have employed a coupling scheme of combining recently proposed mean-field potential (MFP) with the local pseudopotential to obtain vibrational contribution to the total free energy. To access the applicability of the present coupling scheme, we have calculated temperature variation of several thermodynamical properties. Static EOS, shock Hugoniot and temperature along principal Hugoniot are also estimated. Results are satisfactorily compared with the other theoretical and experimental data and the use of local pseudopotential in conjunction with the MFP approach is justified.
机译:在高温和高压等极端环境下,谐波理论存在明显的局限性,其中非谐效应对确定材料的整体性能有影响。在这方面,以二价fcc-Ca为例说明了在有限温度下通过振动贡献和热激发电子将非谐性纳入总自由能的必要性。在这方面,我们采用了一种耦合方案,将最近提出的平均场势(MFP)与局部伪势相结合,以获得对总自由能的振动贡献。为了获得本耦合方案的适用性,我们计算了几种热力学性质的温度变化。还估算了静态EOS,冲击Hugoniot和沿主Hugoniot的温度。将结果与其他理论和实验数据进行了令人满意的比较,并证明了结合MFP方法使用局部假电位是合理的。

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