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Ab initio calculations of elastic constants and thermodynamic properties of bcc, fcc, and hcp Al crystals under pressure

Journal of Physics Condensed Matter · 2002 · Vol. 14(29) · pp. 6989–7005
G V Sin$rquot$koN. A. Smirnov

Abstract

We have performed ab initio electronic structure and total-energy calculations for bcc, fcc, and hcp Al structures to study the equations of state, volume dependences of elastic constants, and relative stability diagram for these structures. A technique for elastic constant calculation in the case of initial isotropic pressure is presented. In this study we used the accurate full-potential linear muffin-tin orbital method to describe electrons of the crystal and the Debye treatment of the vibrating lattice. The volume dependence of the Debye temperature is derived from the volume dependence of the elastic constants. Our calculations show that at pressures of 1–2 Mbar and temperatures of about 1000 K and higher, the aluminium structure must have a lower symmetry than the structures considered.

Boron and Carbon Nanomaterials ResearchHigh-pressure geophysics and materialsAdvanced Chemical Physics StudiesDebye modelLattice constantAb initioAb initio quantum chemistry methodsThermodynamicsIsotropyCondensed matter physicsMaterials scienceChemistryDiffraction

Funding

  • Russian Foundation for Basic Research
Citations
867
FWCI
4.13
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51
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References
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Bulletin of Miscellaneous Information (Royal Gardens Kew) · 1933 · 662 citations
Accurate and simple analytic representation of the electron-gas correlation energy
Physical review. B, Condensed matter · 1992 · 24,707 citations
The Compressibility of Media under Extreme Pressures
Proceedings of the National Academy of Sciences · 1944 · 8,447 citations
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