H. Baltache
Applied Materials
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Publication
Featured researches published by H. Baltache.
International Journal of Modern Physics B | 2014
M. El; Amine Monir; H. Baltache; Ghulam Murtaza; R. Khenata; S. Bin Omran; S. Benalia; D. Rached; Saudi Arabia
The full potential linearized augmented plane wave method within the framework of density functional theory (DFT) is employed to investigate the structural, magnetic, electronic and optical properties of Ti-doped ZnTe and CdTe in the zinc blende phase. In this approach the local spin density approximation (LSDA) is used for the exchangecorrelation (XC) potential. Results are provided for the lattice constant, bulk modulus, pressure derivative, magnetic moment, band structure, density of states and refractive indices. Our results are compared with other theoretical works and good agreement is shown.
International Journal of Modern Physics B | 2016
Mohammed El Amine Monir; H. Baltache; R. Khenata; G. Murtaza; R. Ahmed; Waleed K. Ahmed; S. Bin Omran; A. Bouhemadou
In this paper, spin-polarized density functional calculations on the structural, electronic, optical and magnetic properties of the zincblende structure of the Zn1−xVxS and Cd1−xVxS alloys at x = 0.25 in the ferromagnetic (FM) ordering has been investigated. The study is accomplished using the full-potential (FP) linearized augmented plane wave plus local orbital (LAPW+lo) self-consistent scheme of calculations. To incorporate the exchange correlation component in the total energy calculations of the crystal, Perdew–Burke and Ernzerhof (PBE) parameterization for the generalized gradient approximation (GGA) and GGA+U are employed. Basically, for both alloys, to address their structural properties, we calculated their equilibrium lattice constants, bulk moduli as well as pressure derivatives. In general, from the analysis of the obtained electronic band structure of these alloys, the half-metallic nature of Zn0.75V0.25S and nearly half-metallic nature of the Cd0.75V0.25S alloy are demonstrated. The plotted density of states (DOS) curves project spin-exchange splitting energy Δx(d) and Δx(pd) as generated by V-3d states. It has been clearly evident that the effective potential results for the spin-down case are more striking than for the spin-up case. In order to describe the magnetic behavior of these alloys, the exchange constants N0α (valence band) and N0β (conduction band) as well as the magnetic moment values are estimated. The calculated results of the magnetic moment show that the main source in the reduction of the local magnetic moment of V in the alloys in comparison with its free value is a p–d orbital hybridization and partial transfer to nonmagnetic sites of (Zn, S) and (Cd, S) in Zn0.75V0.25S and Cd0.75V0.25S alloys. In addition, a study concerning optical properties, such as the refractive index, reflectivity and absorption coefficients is performed to determine their potential for optical and optoelectronic devices.
Computational Materials Science | 2006
D. Rached; M. Rabah; N. Benkhettou; R. Khenata; B. Soudini; Y. Al-Douri; H. Baltache
Optik | 2013
M. Ameri; Amina Touia; R. Khenata; Y. Al-Douri; H. Baltache
Journal of Magnetism and Magnetic Materials | 2015
M. El Amine Monir; H. Baltache; R. Khenata; G. Murtaza; Sikander Azam; A. Bouhemadou; Y. Al-Douri; S. Bin Omran; Roshan Ali
Journal of Magnetism and Magnetic Materials | 2015
M. El Amine Monir; H. Baltache; G. Murtaza; R. Khenata; Waleed K. Ahmed; A. Bouhemadou; S. Bin Omran; T. Seddik
Indian Journal of Physics | 2015
M. El Amine Monir; R. Khenata; G. Murtaza; H. Baltache; A. Bouhemadou; Y. Al-Douri; Sikander Azam; S. Bin Omran; H. Ud Din
Journal of Magnetism and Magnetic Materials | 2015
M. El Amine Monir; R. Khenata; H. Baltache; G. Murtaza; M.S. Abu-Jafar; A. Bouhemadou; S. Bin Omran; D. Rached
Journal of Alloys and Compounds | 2016
Wilayat Khan; G. Murtaza; T. Ouahrani; Asif Mahmood; R. Khenata; Mohammed El Amine Monir; H. Baltache
Computational Materials Science | 2006
M. Rabah; D. Rached; N. Benkhettou; R. Khenata; H. Baltache; B. Soudini; M. Ameri; Hamza Abid