We investigate the magnetic and structural properties of the (001) surfaces of V, Cr, and one monolayer V on Cr in density-functional theory in the local spin-density and the generalized gradient approximation. For both exchange-correlation potentials the surface magnetic moment of Cr is very large (2.6 mu (B)) and the V surface is nonmagnetic. One monolayer V on Cr exhibits also a large magnetic moment (2.1 mu (B)) but reduces the Cr moment drastically. The importance of the surface moment on the spin-density wave of Cr is discussed. While some of the discrepancies between theory and experiment are cured by the generalized gradient corrections, several difficulties remain
We employ the full-potential linearized augmented plane-wave method to report a systematic density-f...
The Spin polarization of fcc Con (100) and (111) surfaces is investigated with a first-principle cal...
The theoretical studies of several magnetic materials are presented in this thesis. To each of them,...
International audienceCombined Density Functional Theory (DFT) and Tight-Binding (TB) calculations a...
We report generalized-gradient-approximation (GGA) density-functional studies of Cr, V, and Pd, usin...
We have used the symmetrized fall-potential linearized augmented plane wave method for sIab geometry...
A full-potential linearized augmented plane-wave (FLAPW) electronic structure method was developed t...
Chromium surfaces and Cr monolayers atop Fe have greatly enhanced magnetizations relative to bulk. T...
With a newly developed KKR Green's function method for defects at surfaces in local spin density app...
We discuss the polarization of V atoms on Co(001) substrates within density functional calculations....
The magnetic structure of a Cr monolayer on a W(110) substrate is investigated by means of first-pri...
The first-principles molecular cluster discrete variational method (DV) is used to investigate the e...
The magnetic properties of 4d monoatomic rows on Ag substrates have been studied by ab initio calcul...
With a newly developed KKR Green's function method for defects at surfaces in local spin density app...
Low-dimensional magnetic materials show novel properties that is not seen in bulk magnets. The weak ...
We employ the full-potential linearized augmented plane-wave method to report a systematic density-f...
The Spin polarization of fcc Con (100) and (111) surfaces is investigated with a first-principle cal...
The theoretical studies of several magnetic materials are presented in this thesis. To each of them,...
International audienceCombined Density Functional Theory (DFT) and Tight-Binding (TB) calculations a...
We report generalized-gradient-approximation (GGA) density-functional studies of Cr, V, and Pd, usin...
We have used the symmetrized fall-potential linearized augmented plane wave method for sIab geometry...
A full-potential linearized augmented plane-wave (FLAPW) electronic structure method was developed t...
Chromium surfaces and Cr monolayers atop Fe have greatly enhanced magnetizations relative to bulk. T...
With a newly developed KKR Green's function method for defects at surfaces in local spin density app...
We discuss the polarization of V atoms on Co(001) substrates within density functional calculations....
The magnetic structure of a Cr monolayer on a W(110) substrate is investigated by means of first-pri...
The first-principles molecular cluster discrete variational method (DV) is used to investigate the e...
The magnetic properties of 4d monoatomic rows on Ag substrates have been studied by ab initio calcul...
With a newly developed KKR Green's function method for defects at surfaces in local spin density app...
Low-dimensional magnetic materials show novel properties that is not seen in bulk magnets. The weak ...
We employ the full-potential linearized augmented plane-wave method to report a systematic density-f...
The Spin polarization of fcc Con (100) and (111) surfaces is investigated with a first-principle cal...
The theoretical studies of several magnetic materials are presented in this thesis. To each of them,...