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An efficient ab-initio quasiharmonic approach for the thermodynamics of solids
- Publication Year :
- 2016
- Publisher :
- arXiv, 2016.
-
Abstract
- A first-principles approach called the self-consistent quasiharmonic approximation (SC-QHA) method is formulated to calculate the thermal expansion, thermomechanics, and thermodynamic functions of solids at finite temperatures with both high efficiency and accuracy. The SC-QHA method requires fewer phonon calculations than the conventional QHA method, and also facilitates the convenient analysis of the microscopic origins of macroscopic thermal phenomena. The superior performance of the SC-QHA method is systematically examined by comparing it with the conventional QHA method and experimental measurements on silicon, diamond, and alumina. It is then used to study the effects of pressure on the anharmonic lattice properties of diamond and alumina. The thermal expansion and thermomechanics of Ca 3 Ti 2 O 7 , which is a recently discovered important ferroelectric ceramic with a complex crystal structure that is computationally challenging for the conventional QHA method, are also calculated using the formulated SC-QHA method. The SC-QHA method can significantly reduce the computational expense for various quasiharmonic thermal properties especially when there are a large number of structures to consider or when the solid is structurally complex. It is anticipated that the algorithm will be useful for a variety of fields, including oxidation, corrosion, high-pressure physics, ferroelectrics, and high-throughput structure screening when temperature effects are required to accurately describe realistic properties.
- Subjects :
- Materials science
Chemistry(all)
General Computer Science
Phonon
Ab initio
General Physics and Astronomy
Thermodynamics
FOS: Physical sciences
02 engineering and technology
Physics and Astronomy(all)
engineering.material
01 natural sciences
7. Clean energy
Thermal expansion
Materials Science(all)
0103 physical sciences
Thermal
General Materials Science
Ceramic
010306 general physics
Condensed Matter - Materials Science
Anharmonicity
Diamond
Materials Science (cond-mat.mtrl-sci)
General Chemistry
021001 nanoscience & nanotechnology
Computational Mathematics
Mechanics of Materials
visual_art
visual_art.visual_art_medium
engineering
Density functional theory
0210 nano-technology
Computer Science(all)
Subjects
Details
- Database :
- OpenAIRE
- Accession number :
- edsair.doi.dedup.....dc562a7b447cdb4a3ef03359592f7d32
- Full Text :
- https://doi.org/10.48550/arxiv.1603.08122