Ab-Initio Computations of Electronic and Related Properties of cubic Magnesium Silicide (Mg<sub>2</sub>Si)
POSTER
Abstract
We have performed ab-initio, self-consistent calculations of electronic, transport, and bulk properties of cubic magnesium silicide (Mg2Si). Our computations employed the local density approximation (LDA) potential of Ceperley and Alder and the linear combination of atomic orbital (LCAO) formalism. We followed the BZW-EF method to reach the ground state of the maerials, verifiable, without using over-complete basis sets. For a room temperature lattice constant, our calculated, indirect band gap, from Γ to X, is 0.86 eV. We discuss the total and partial densities of states, electron and hole effective masses, and the bulk modulus.
Presenters
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Yuriy Malozovsky
Southern Univ & A&M Coll, Department of Mathematics and Physics, Southern University and A&M College
Authors
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Dioum Allé
Department of Physics, Cheick Anta Diop University (UCAD), Dakar, Senegal
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Blaise Ayirizia
Southern Univ & A&M Coll, Department of Mathematics and Physics, Southern University and A&M College
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Yuriy Malozovsky
Southern Univ & A&M Coll, Department of Mathematics and Physics, Southern University and A&M College
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Diola Bagayoko
Southern Univ & A&M Coll, Department of Mathematics and Physics, Southern University and A&M College