عرفان نوریان

صفحه نخست /عرفان نوریان
عرفان نوریان
نام و نام خانوادگی عرفان نوریان
شغل دانشجوی دانشگاه کردستان
تحصیلات دکترای تخصصی / فیزیک
وبسایت
پست الکترونیک
 عنوانمجله
1 Theoretical perspective on the electronic, magnetic and thermodynamic properties of T-graphene: the tight-binding approach Chinese Journal of Physics
2 The impacts of spin–orbit coupling and strain on transverse dynamical spin susceptibility in undoped phosphorene: Kane–Mele model study Solid State Communications
3 The local electronic interaction and strain effects on transverse dynamical spin susceptibility of β-graphyne PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES
4 Biaxial strain and magnetic field effects on electronic and optical properties of β-graphyne structure Physica E: Low-dimensional Systems and Nanostructure
5 Effects of spin–orbit coupling on transmission and absorption of electromagnetic waves in strained armchair phosphorene nanoribbons RSC advances
6 Thermodynamics Properties of (6, 6, 12)-Graphyne Structure Due to Biaxial Strain and Magnetic Field Effects ECS Journal of Solid State Science and Technology
7 Optical properties of non‑hexagonal S‑graphene: the role of exchange magnetic fields and hole/electron doping Optical and Quantum Electronics
8 Strain and magnetic field effects on the electronic and transport properties of γ-graphyne RSC advances
9 The effects of spin-orbit coupling on optical properties of monolayer MoS2 due to mechanical strains Scientific Reports
10 Effects of Electric Field and External Magnetic Field on the Electronic and Thermoelectric Properties of the h-BAs Monolayer and Bilayer: Tight-Binding Approach ECS Journal of Solid State Science and Technology
11 The effect of an external magnetic field, doping, and bias voltage on the thermoelectric and thermodynamic of S-graphene monolayer MATERIALS SCIENCE IN SEMICONDUCTOR PROCESSING
12 Effect of external magnetic field and doping on electronic and thermodynamic properties of planer and buckled silicene monolayer Scientific Reports
13 Surface characterization of NiO thin films deposited by RF-magnetron sputtering at different thickness: Statistical and multifractal approach MICROSCOPY RESEARCH AND TECHNIQUE