Systematic ab initio study of the electronic and magnetic properties of different pure and mixed iron systems

被引:96
作者
Izquierdo, J [1 ]
Vega, A
Balbás, LC
Sánchez-Portal, D
Junquera, J
Artacho, E
Soler, JM
Ordejón, P
机构
[1] Univ Valladolid, Dept Fis Teor, E-47011 Valladolid, Spain
[2] Univ Illinois, Dept Phys, Urbana, IL 61801 USA
[3] Univ Illinois, Mat Res Lab, Urbana, IL 61801 USA
[4] Univ Autonoma Madrid, Dept Fis Mat Condensada C 3, E-28049 Madrid, Spain
[5] Univ Autonoma Madrid, Inst Nicolas Cabrera, E-28049 Madrid, Spain
[6] Harvard Univ, Dept Phys, Cambridge, MA 02138 USA
[7] CSIC, Inst Ciencia Mat Barcelona, E-08193 Barcelona, Spain
关键词
D O I
10.1103/PhysRevB.61.13639
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We present a theoretical study of the electronic and magnetic properties of iron systems in different environments: pure iron systems [dimer, bcc bulk, (100) surface, and free-standing iron monolayer], and low-dimensional iron systems deposited on Ag (100) surface (monoatomic linear wires, iron monolayer, planar, and three-dimensional clusters). Electronic and magnetic properties have been calculated using a recently developed total-energy first-principles method based on density-functional theory with numerical atomic orbitals as a basis set for the description of valence electrons and nonlocal pseudopotentials for the atomic core. The Kohn-Sham equations are solved self-consistently within the generalized gradient approximation for the exchange-correlation potential. Tests on the pseudopotential, the basis set, grid spacing, and k sampling an carefully performed. This technique, which has been proved to be very efficient for large nonmagnetic systems, is applied in this paper to calculate electronic and magnetic properties of different iron nanostructures. The results compare well with previous nb initio all-electron calculations and with experimental data. The method predicts the correct trends in the magnetic moments of Fe systems for a great variety of environments and requires a smaller computational effort than other ab initio methods.
引用
收藏
页码:13639 / 13646
页数:8
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