Magnetic Ordering and Electronic Structure of the Ternary Iron Arsenide BaFe2As2

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Journal Title, Volume, Page: 
International Journal of Modern Physics B Vol. 29, No. 23 (2015) 1550182 (14 pages
Year of Publication: 
2015
Authors: 
R. Zine El-Kelma
Current Affiliation: 
Laboratoire de Mod´elisation et Simulation en Sciences des Mat´eriaux, Universit´e Djillali Liab`es de Sidi Bel-Abb`es
L. Beldi
Current Affiliation: 
Laboratoire de Mod´elisation et Simulation en Sciences des Mat´eriaux, Universit´e Djillali Liab`es de Sidi Bel-Abb`es
F. El Haj Hassan
Current Affiliation: 
Universit´e Libanaise, Facult´e des sciences (I), Laboratoire de Physique et d’Electronique (LPE), Elhadath Beirut, Lebanon
G. Murtaza
Current Affiliation: 
Materials Modeling Lab, Department of Physics, Islamia College University, Peshawar, Pakistan
R. Khenata
Current Affiliation: 
Laboratoire de Physique Quantique et de Mod´elisation Math´ematique, Universit´e de Mascara, Mascara 29000, Algeria
M. S. Abu-Jafar
Dipartimento di Fisica Universita di Roma “La Sapienza”, I-00185 Roma, Italy
Current Affiliation: 
∗Department of Physics, An-Najah National University, 970 Nablus, Palestine
S. Bin Omran
Current Affiliation: 
Department of Physics and Astronomy, College of Science, King Saud University, P. O. Box 2455, Riyadh 11451, Saudi Arabia
B. Bouhafs
Current Affiliation: 
Laboratoire de Mod´elisation et Simulation en Sciences des Mat´eriaux, Universit´e Djillali Liab`es de Sidi Bel-Abb`es, Sidi Bel-Abb`es, 22000, Alg´erie
Preferred Abstract (Original): 
In this paper, we report structural parameters, magnetic ordering and the electronic structure of the tetragonal and orthorhombic ternary iron arsenide compound BaFe2As2. Ab initio calculations are performed by the means of full-potential linearized augmented plane waves plus local orbitals method for both spin states. The local spin density plus Hubbard potential (LSDA + U) and generalized gradient plus Hubbard potential (GGA+U) approximations are used to treat the exchange and correlation potentials. The results mainly show that orthorhombic BaFe2As2 compound has an antiferromagnetic spin ordering. Both spin-up and spin-down polarizations are considered to investigate the band structure, density of states and electron charge density. High density of states population at the Fermi level reveals metallic character of this material. The magnetism property arises essentially from the 3d orbital of iron atom.

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