Half-metallicity feature within Ag-doped zincblende WGe alloys: DFT+U insights

Author:

Nasri Djazia12,Riane Houaria1,Monir Mohammed El Amine1ORCID,Al-Maaitah Ibtisam F.3,Al-Maaitah A. F.4,Laref Amel5,Baltach Hadj12,Reguig Abdelkarim Bendoukha1

Affiliation:

1. Faculty of the Exact Sciences Mustapha Stambouli University of Mascara B.P. 305, 29000 Mascara, Algeria

2. Laboratoire de la Physique Quantique de la Matière, et de la Modélisation Mathématique (LPQ3M) Mustapha Stambouli University of Mascara B.P. 305, 29000 Mascara, Algeria

3. Applied Physics Department, Faculty of Science, Tafila Technical University P.O. Box: 179, Tafila, Jordan

4. Department of Physics, Mutah University Mutah, Karak, 61710, P.O. Box: 7, Jordan

5. Department of Physics and Astronomy College of Science, King Saud University Riyadh 11451, Saudi Arabia

Abstract

By employing the full-potential linearized augmented plane wave (FP-L/APW[Formula: see text]lo) technique based on density functional theory (DFT), the structural, electronic and magnetic properties of zincblende W[Formula: see text]AgxGe alloys ([Formula: see text] and 0.25) are scrutinized thoroughly. Based on the generalized gradient approximation (GGA), the exchange-correlation energy functional is included in the current simulation. For computing the structural features, the GGA approximation is applied, whereas GGA, [Formula: see text] and the modified Burke–Johnson of [Formula: see text] (TB-mBJ-[Formula: see text] approximations are incorporated to perform the calculations of electronic and magnetic behaviors of these alloys. The structural analysis of the alloys indicated that the total energy of the W[Formula: see text]Ag[Formula: see text]Ge alloy was favorable in the ferromagnetic ground state. The spin-polarized electronic structure shows the half-metallic behavior of the W[Formula: see text]Ag[Formula: see text]Ge alloy, while the WGe compound is identified as a metal. The magnetic results obtained from the half-metallic W[Formula: see text]Ag[Formula: see text]Ge alloy increasingly support the full half-metallicity of this compound because an integer value is acquired for the total magnetic moment. The strong hybridization between 4p-Ge and 3d-W states brings forth weak local magnetic moments at the nonmagnetic Ge atomic sites and reduces the local magnetic moment of the W atomic sites from its free space charge.

Publisher

World Scientific Pub Co Pte Ltd

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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