We show how equations of state generated by density functional theory methods can be augmented to match experimental data without distorting the correct behavior in the high- and low-density limits. The technique is thermodynamically consistent and relies on knowledge of the density and bulk modulus at a reference state and an estimation of the critical density of the liquid phase. We apply the method to four materials representing different classes of solids: carbon, molybdenum, lithium, and lithium fluoride. It is demonstrated that the corrected equations of state for both the liquid and solid phases show a significantly reduced dependence of the exchange-correlation functional used. © 2014 AIP Publishing LLC.
CITATION STYLE
French, M., & Mattsson, T. R. (2014). Thermodynamically constrained correction to ab initio equations of state. Journal of Applied Physics, 116(1). https://doi.org/10.1063/1.4885417
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