热力学
冲击波
状态方程
热膨胀
休克(循环)
钻石
领域(数学)
体积热力学
Grüneisen参数
材料科学
从头算
化学
原子物理学
物理
冶金
有机化学
纯数学
内科学
医学
数学
作者
Yi Wang,Rajeev Ahuja,Börje Johansson
摘要
Based on ab initio calculated 0 K results for the assumed face- or body-centered-cubic ground state, the thermal volume expansion of the principal Hugoniot relative to the 300 K isotherm is calculated using the recently developed mean-field potential approach for Cu, Ta, Mo, Pt, and Au. Neglecting shock melting and phase dependence of the high-temperature equation of state, shock-reduced 300 K isotherms at pressures up to 1 TPa (10 Mbar) are derived for these metals by substracting the calculated thermal volume expansion from the experimental shock-wave data. This approach does not invoke any empirical assumptions regarding the Grüneisen parameters or heat capacities. The excellent agreement between such shock-reduced data and the normal standards or empirical reductions by other authors shows that the reduced results can be used as pressure standards for the widely employed static diamond-anvil-cell experiments.
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