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Izeddine Zorkani
Researcher at Laboratory of Solid State Physics
Publications - 82
Citations - 937
Izeddine Zorkani is an academic researcher from Laboratory of Solid State Physics. The author has contributed to research in topics: Quantum dot & Magnetic field. The author has an hindex of 15, co-authored 61 publications receiving 594 citations. Previous affiliations of Izeddine Zorkani include Solid State Physics Laboratory.
Papers
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Synthesis, characterization, and growth mechanism of α-Cr2O3 monodispersed particles
Saleh Khamlich,Saleh Khamlich,Saleh Khamlich,E. Manikandan,Balla D. Ngom,J. Sithole,O. Nemraoui,Izeddine Zorkani,Robert I. McCrindle,N. Cingo,N. Cingo,Malik Maaza,Malik Maaza,Malik Maaza +13 more
TL;DR: In this article, the authors used the Aqueous Chemical Growth (ACG) technique to synthesize monodispersed spherical particles of chromium (III) oxide, α-Cr2O3, from a diluted solution of KCr(SO4)2·12H2O using the ACG technique.
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Electrical properties of molybdenum disulfide MoS2. Experimental study and density functional calculation results
O. El Beqqali,Izeddine Zorkani,François Rogemond,Henry Chermette,R. Ben Chaabane,M. Gamoudi,G. Guillaud +6 more
TL;DR: In this paper, the conduction mechanism of Molybdenum disulfide in thin layers and pressed pellets has been characterized using density functional theory and experimental methods, and a good agreement is found between the theoretical predictions and experimental results.
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Linear and nonlinear intra-conduction band optical absorption in (In,Ga)N/GaN spherical QD under hydrostatic pressure
TL;DR: In this paper, a combination of Quantum Genetic Algorithm (QGA) and Hartree-Fock-Roothaan (HFR) method was used to estimate the optical absorption coefficients of In,GaN/GaN spherical quantum dot.
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Pressure-dependent of linear and nonlinear optical properties of (In,Ga)N/GaN spherical QD
TL;DR: In this paper, a combination of Quantum Genetic Algorithm (QGA) and Hartree-Fock-Roothaan (HFR) method was used to compute the optical properties of (In,Ga)N-GaN spherical quantum dot.
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Magnetic field effect on the polarizability of shallow donor in cylindrical quantum dot
TL;DR: In this paper, the binding energy and the polarizability of shallow donor impurities in cylindrical GaAs quantum dot under an applied magnetic field were calculated using a variational method in the effective mass approximation and considering a noninteracting model.