Title | Modeling non-harmonic behavior of materials from experimental inelastic neutron scattering and thermal expansion measurements. |
Publication Type | Journal Article |
Year of Publication | 2016 |
Authors | D Bansal, A Aref, G Dargush, and O Delaire |
Journal | Journal of Physics. Condensed Matter : an Institute of Physics Journal |
Volume | 28 |
Issue | 38 |
Start Page | 385201 |
Pagination | 385201 - 385201 |
Date Published | 09/2016 |
Abstract | Based on thermodynamic principles, we derive expressions quantifying the non-harmonic vibrational behavior of materials, which are rigorous yet easily evaluated from experimentally available data for the thermal expansion coefficient and the phonon density of states. These experimentally-derived quantities are valuable to benchmark first-principles theoretical predictions of harmonic and non-harmonic thermal behaviors using perturbation theory, ab initio molecular-dynamics, or Monte-Carlo simulations. We illustrate this analysis by computing the harmonic, dilational, and anharmonic contributions to the entropy, internal energy, and free energy of elemental aluminum and the ordered compound [Formula: see text] over a wide range of temperature. Results agree well with previous data in the literature and provide an efficient approach to estimate anharmonic effects in materials. |
DOI | 10.1088/0953-8984/28/38/385201 |
Short Title | Journal of Physics. Condensed Matter : an Institute of Physics Journal |