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High-Throughput Prediction of Finite-Temperature Properties using the Quasi-Harmonic Approximation

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arxiv 1603.06924 v2 pith:5C7L6JOK submitted 2016-03-22 cond-mat.mtrl-sci

classification cond-mat.mtrl-sci
keywords propertiesthermalaccuracyapproximationautomaticbeendatahigh-throughput
verification ladder T0 review T1 audit T2 compute T3 formal
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In order to calculate thermal properties in automatic fashion, the Quasi-Harmonic Approximation (QHA) has been combined with the Automatic Phonon Library (APL) and implemented within the AFLOW framework for high-throughput computational materials science. As a benchmark test to address the accuracy of the method and implementation, the specific heats, thermal expansion coefficients, Gr\"uneisen parameters and bulk moduli have been calculated for 130 compounds. It is found that QHA-APL can reliably predict such values for several different classes of solids with root mean square relative deviation smaller than 28% with respect to experimental values. The automation, robustness, accuracy and precision of QHA-APL enable the computation of large material data sets, the implementation of repositories containing thermal properties, and finally can serve the community for data mining and machine learning studies.

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