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PHYSICS
Development of an orbital-free approach for simulation of multi-atomic nanosystems with covalent bonds
V. G. Zavodinskóa, O. A. Gorkushab a Institute for Material Science, 153 Tikhookeanskaya str., 680042 Khabarovsk, Russia
b Institute of Applied Mathematics, 54 Dzerzhinskogo str., 680000 Khabarovsk, Russia
Abstract:
On the example of the three-atomic clusters $\mathrm{Al}_3$, $\mathrm{Si}_3$, and $\mathrm{C}_3$, it is shown that an orbital-free version of the density functional theory may be used for finding equilibrium configurations of multi-atomic systems with both metallic and covalent bonding. The equilibrium interatomic distances, interbonding angles and binding energies are found to be in good agreement with known data.
Keywords:
Orbital-free, density functional, covalent bonding, angle dependence.
Received: 09.11.2015 Revised: 17.12.2015
Citation:
V. G. Zavodinskó, O. A. Gorkusha, “Development of an orbital-free approach for simulation of multi-atomic nanosystems with covalent bonds”, Nanosystems: Physics, Chemistry, Mathematics, 7:3 (2016), 427–432
Linking options:
https://www.mathnet.ru/eng/nano216 https://www.mathnet.ru/eng/nano/v7/i3/p427
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Abstract page: | 81 | Full-text PDF : | 21 |
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