Ab initio theory of the equation of state for compressed rare gas crystals
- Authors: Pilipenko E.A.1, Troitskaya E.P.1, Gorbenko I.I.2
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Affiliations:
- Donetsk Institute for Physics and Engineering
- Lugansk Taras Shevchenko National University
- Issue: Vol 60, No 1 (2018)
- Pages: 153-161
- Section: Lattice Dynamics
- URL: https://journals.rcsi.science/1063-7834/article/view/201940
- DOI: https://doi.org/10.1134/S1063783418010171
- ID: 201940
Cite item
Abstract
Nonempirical equations of state of compressed rare gas crystals Ne, Ar, Kr, and Xe are studied on the basis of the earlier-obtained ab initio adiabatic potential. The paired and three-body short-range repulsive potentials are calculated by the Hartree–Fock method in the basis of localized functions with their exact mutual orthogonalization and do not contain experimentally determined parameters. The theory is compared with the experiment and results of calculations by other authors. Analysis of the proposed equations of state for large compressions has shown the importance of taking into account the three-body interaction and the terms of the higher order in the overlap integral in compressed neon and the sufficiency of the quadratic approximation in the orthogonalization of functions in heavy rare gas crystals.
About the authors
E. A. Pilipenko
Donetsk Institute for Physics and Engineering
Author for correspondence.
Email: pilipenko.katerina@mail.ru
Ukraine, Donetsk, 83114
E. P. Troitskaya
Donetsk Institute for Physics and Engineering
Email: pilipenko.katerina@mail.ru
Ukraine, Donetsk, 83114
Ie. Ie. Gorbenko
Lugansk Taras Shevchenko National University
Email: pilipenko.katerina@mail.ru
Ukraine, Lugansk, 91000
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