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Accurate Electronic, Transport, and Related Properties of Wurtzite Beryllium Oxide (w-BeO)
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作者 Cheick Oumar Bamba Richard Inakpenu +4 位作者 Yacouba I. diakite Lashounda Franklin Yuriy Malozovsky anthony d. stewart diola Bagayoko 《Journal of Modern Physics》 2017年第12期1938-1949,共12页
We report details of our ab-initio, self-consistent density functional theory (DFT) calculations of electronic and related properties of wurtzite beryllium oxide (w-BeO). Our calculations were performed using a local ... We report details of our ab-initio, self-consistent density functional theory (DFT) calculations of electronic and related properties of wurtzite beryllium oxide (w-BeO). Our calculations were performed using a local density approximation (LDA) potential and the linear combination of atomic orbitals (LCAO) formalism. Unlike previous DFT studies of BeO, the implementation of the Bagayoko, Zhao, and Williams (BZW) method, as enhanced by the work of Ekuma and Franklin (BZW-EF), ensures the full physical content of the results of our calculations, as per the derivation of DFT. We present our computed band gap, total and partial densities of states, and effective masses. Our direct band gap of 10.30 eV, reached by using the experimental lattice constants of a = 2.6979 &Aring;and c = 4.3772 &Aring;at room temperature, agrees very well the experimental values of 10.28 eV and 10.3 eV. The hybridization of O and Be p states in the upper valence bands, as per our calculated, partial densities of states, are in agreement with corresponding, experimental findings. 展开更多
关键词 Density Functional Theory BZW-EF Method ACCURATE Calculated Properties
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