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Pressure-volume-temperature equations of state of Au and Pt up to 300 GPa and 3000 K: internally consistent pressure scales

机译:高达300 GPa和3000 K的Au和Pt的状态的压力-体积-温度方程:内部一致的压力标度

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By using a Mie-Gruneisen-type analysis method, the pressure-volume-temperature equations of state (P-V-T EOSs) of Au and Pt have been determined up to 300 GPa and 3000K based on the experimental shock Hugoniot and thermodynamic data. The calculated results ofAu and Pt show an excellent agreement with available experimental volume compression data over a wide range of pressures and temperatures. A comparison of our results with previous theoretical investigations has also been done. In addition, we have further examined the consistency of our results and the P-V-T EOS of MgO [K. Jin, X. Z. Li, Q. Wu, H. Y. Geng, L. C. Cai, X. M. Zhou, and F. Q. Jing, The pressure-volume-temperature equation of state of MgO derived from shock Hugoniot data and its application as a pressure scale, J. Appl. Phys. 107 (2010), pp. 113518] using simultaneous volume measurements of Au, Pt, and MgO at various temperatures. The good agreement among the P-V-T EOSs of Au, Pt, and MgO implies that these EOSs can be used as the reliable pressure scales in high pressure-temperature diamond anvil cell experiments.
机译:通过使用Mie-Gruneisen型分析方法,根据实验冲击Hugoniot和热力学数据,确定了高达300 GPa和3000K的Au和Pt的压力-体积-温度状态方程(P-V-T EOSs)。在很宽的压力和温度范围内,Au和Pt的计算结果与可用的实验体积压缩数据显示出极好的一致性。我们的结果与以前的理论研究也进行了比较。此外,我们进一步检查了结果与MgO的P-V-T EOS的一致性。 Jin,X. Z. Li,Wu Q. Wu,H.Y.Geng,L.C.Cai,X.M.Zhou,and F.Q.Jing,MgO的压力-体积-温度状态方程,由冲击Hugoniot数据推导并作为压力标度应用,J.物理,第107页(2010),第113518页]中使用了在各种温度下同时测量Au,Pt和MgO的体积。 Au,Pt和MgO的P-V-T EOS之间的良好协议意味着,这些EOS可用作高压高温金刚石砧细胞实验中的可靠压力标度。

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