A statistical mechanical study of thermodynamic properties of solid sodium under pressure based on an effective interionic potential

Basing on the Schiff effective interionic potential that has an oscillatory character and the correlative method of unsymmetrized self-consistent field (CUSF) that enables one to take into account the strong anharmonicity of the crystal lattice vibrations, we have calculated a complete set of equilibrium thermodynamic properties of solid sodium as functions of pressure and temperature: the lattice parameter, the elastic moduli, the thermal expansion coefficient, the Grüneisen parameter and the isochoric and isobaric heat capacities. Our results are compared with available experimental data. We also discuss the thermodynamic stability of the BCC lattice, the mechanism of its loss and its change under pressure.

Authors
Zubov V.I. 1, 2 , Caparica A.A.2
Number of issue
15
Language
English
Pages
2185-2194
Status
Published
Volume
18
Year
2004
Organizations
  • 1 Dept. of Theoretical Physics, Russ. Peoples' Friendship University, 117198, Moscow, Russian Federation
  • 2 Instituto de Fisica, Universidade Federal de Goiás, C.P. 131, 74.001-970 Goiânia, GO, Brazil
Keywords
Schiff potential; Sodium; Strongly anharmonic crystals; Thermodynamic properties and stability
Date of creation
19.10.2018
Date of change
19.10.2018
Short link
https://repository.rudn.ru/en/records/article/record/3632/
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