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FAHMI Atika

Email : atika.fahmi@uit.ac.ma

Établissement : Faculté des sciences

Laboratoire : Physique des Matériaux et Subatomique

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📚 Publications Scopus — Total : 34
Titre Année 🔗 Voir
Design and analysis of RbBeBr3−xIx (x=0–3) lead-free perovskites: Tunable mechanical and optoelectronic properties via iodine substitution 2026 🔗 Voir
Alloying effect on the magnetic and magnonic properties of a thin-film superlattice based on the magnetic semiconductor Ge1−xFex/Ge 2026 🔗 Voir
DFT improving the optoelectronic and thermoelectric performance of Ba2SrXO6(X = Cr, Mo, W) for solar cell applications 2025 🔗 Voir
Tunable mechanical, opto-electronic, and thermoelectric properties of Sr2NbXO6(X=Al,In, and Tl) double perovskites as a sustainable energy application: insights from first-principles calculations 2025 🔗 Voir
Impact of transition metal doping on the optical and electrical properties of zinc sulfide: advancing photovoltaic performance 2025 🔗 Voir
Enhanced structural stability and optoelectronic properties of lead-free α-phase CsSnI3 perovskite via Zn and Cu doping 2025 🔗 Voir
Influence of Solution Acidity on the Growth, Structural and Optical Properties of Co-electrodeposited Cu2SnS3 thin Films: Experimental and DFT Discussions 2025 🔗 Voir
Investigating the impact of copper precursors on the photovoltaic performance of Cu2SnS3 thin film-based solar cells toward an enhanced power conversion efficiency of 9.85% 2025 🔗 Voir
Investigation of the impact of transition metals (TM = Fe, Co, Ni) doping on the optoelectronic properties of tin dioxide SnO2: first-principles analysis 2024 🔗 Voir
Effect of deposition time on the physicochemical properties of co-electrodeposited Cu2SnS3 thin films for photovoltaic applications 2024 🔗 Voir
Dynamic and magnetic properties of excited magnons in tetragonal fcc FexPt1−x/SiO multilayer alloys 2024 🔗 Voir
Contribution of magnons created in volume and within the surface in low-dimensional dilute magnetic semiconductor: eTBA Calculation for Sn1−xCoxO2 2024 🔗 Voir
Impact of different rinsing temperatures on SnS thin films created using the SILAR technique 2024 🔗 Voir
Contribution to the Study of Elementary Magnetic Excitations in the Fe/Pt Superlattice 2024 🔗 Voir
A comparative evaluation of the efficiency of CTX (X = S, Se) solar cells with a p+-CTS as back surface field 2024 🔗 Voir
Classification Artificial Intelligence Algorithms Coupled with Clustering Algorithms: A Potential Technique to Consider for Predicting Soil Liquefaction Phenomena 2024 🔗 Voir
Exploring the correlation between the bandgap engineering and defect density toward high CTS solar cell efficiency 2023 🔗 Voir
Numerical Simulation: Toward High-Efficiency CIGS Solar Cell Through Buffer Layer Replacement 2023 🔗 Voir
Characterization of magnons created inside the bulk and at the surface of ferromagnetic multilayer Co 1-xFe x/ Cu 2022 🔗 Voir
The effect of ZnS buffer layer on Cu2SnS3 (CTS) thin film solar cells performance: Numerical approach 2022 🔗 Voir
Atmospheric growth of ZnO thin films doped and co-doped with Ni and Co via UMVD: experimental and theoretical study 2022 🔗 Voir
Magnon Contribution to the Magnetic Properties of a Multilayered System Made of 3d Transition Metal Binary Alloys A1-xBx 2021 🔗 Voir
Effect of Chemical Composition on Volume and Surface Magnon Creation in Multilayer C o x P t 1−x /P t 2019 🔗 Voir
The combined effect of alloy and temperature on the transition from quantum to classical regime of the magnons excited in [Formula presented] 2019 🔗 Voir
Effect of the Interfacial Disorder on the Magnetotransport Properties in Ni81Fe19/Ti10 W 90 Multilayers 2017 🔗 Voir
Effect of alloy on the evolution of created magnons in the multilayer system FexCo1- x/Cu 2017 🔗 Voir
Magnetic Field Effect on the Evolution of the Magnon Population Properties in the [Co/Ag] Superlattice 2014 🔗 Voir
Properties of the magnon populations in the super lattice [Fe/GaAs] 2014 🔗 Voir
Effect of the applied magnetic field and the layer thickness on the magnon properties in bilayers Co/Pt and symmetrical trilayer Pt/Co/Pt 2014 🔗 Voir
The effect of the interface roughness on the magnetotransport properties in Ni81Fe19/Zr multi-layers 2014 🔗 Voir
Magnetotransport properties in Ni81Fe19/Zr multi-layers 2013 🔗 Voir
Spin wave relaxation and magnetic properties in [M/Cu] super-lattices; M=Fe, Co and Ni 2009 🔗 Voir
Dipolar interaction, surface anisotropy and alloying effect on magnetic properties of the superlattice Ni1-xFex/Cu 2006 🔗 Voir
A study of the magnon contribution to the properties of the [Ni1-xFex/Cu] alloy super-lattices 2006 🔗 Voir