Using density functional theory based ab initio calculations, we investigated the effects of Ti/Al(001) surface phase variation on the Fe adatom magnetism. The symmetry of the in-plane magnetic anisotropy of the Fe adatomcorresponded to the symmetry of the Ti and Al atomic configurations on the top surface. When B2 or L1(2) structures of Ti and Al atoms were formed on the surface, the energy barriersfor the Fe in-plane magnetization rotations were smaller than the case of the bare AI(001) surface. The out-of-plane magnetization of Fe adatoms were induced only on the AI-terminated substrates while the Fe on the Ti-appearing surface had its magnetic easy axis in the in-plane directions. The magnetic anisotropy energy magnitude was, on the oth...
The Fermi surfaces and Elliott-Yafet spin-mixing parameter (EYP) of several elemental metals are stu...
The L21-structure Fe2AlTi intermetallic compound is one of the two phases identified in Fe-Al-Ti sup...
Quantum-mechanical calculations are applied to examine magnetic and electronic properties of phases ...
Using ab initio calculations, we obtained the surface phase diagram of a Fe/Pt(001) surface and the ...
Using first principles calculations, we investigated interface structure effects on the magnetic pro...
The electronic structure and magnetic properties of the Fe(001) surface with Al overlayers, vice ver...
Significant enhancement of the magnetocrystalline anisotropy (MCA) of an Fe(001) surface capped by 4...
The structure dependent magnetism and intermixing characteristics of Ti/Fe(001) thin films were inve...
金沢大学理工研究域 数物科学系We investigated the magnetic anisotropy of an iron layer on a Pt(001) surface and som...
The intermetallic compound Fe 2 AlTi (alternatively Fe 2 TiAl) is an important phase i...
Shape-dependent magnetic moment and island formation energy of Fe adatoms on a Cu(111) surface were ...
The complex correlation of structure and magnetism in highly coercive monoatomic FePt surface alloys...
First-principles full-potential linearized augmented plane-wave studies reveal that a surface magnet...
The electronic structure of the (001) and (110) surfaces for B2 Ti-based transition metal alloys wer...
Using the first-principles calculations, the changes in the magnetic moment and the electronic struc...
The Fermi surfaces and Elliott-Yafet spin-mixing parameter (EYP) of several elemental metals are stu...
The L21-structure Fe2AlTi intermetallic compound is one of the two phases identified in Fe-Al-Ti sup...
Quantum-mechanical calculations are applied to examine magnetic and electronic properties of phases ...
Using ab initio calculations, we obtained the surface phase diagram of a Fe/Pt(001) surface and the ...
Using first principles calculations, we investigated interface structure effects on the magnetic pro...
The electronic structure and magnetic properties of the Fe(001) surface with Al overlayers, vice ver...
Significant enhancement of the magnetocrystalline anisotropy (MCA) of an Fe(001) surface capped by 4...
The structure dependent magnetism and intermixing characteristics of Ti/Fe(001) thin films were inve...
金沢大学理工研究域 数物科学系We investigated the magnetic anisotropy of an iron layer on a Pt(001) surface and som...
The intermetallic compound Fe 2 AlTi (alternatively Fe 2 TiAl) is an important phase i...
Shape-dependent magnetic moment and island formation energy of Fe adatoms on a Cu(111) surface were ...
The complex correlation of structure and magnetism in highly coercive monoatomic FePt surface alloys...
First-principles full-potential linearized augmented plane-wave studies reveal that a surface magnet...
The electronic structure of the (001) and (110) surfaces for B2 Ti-based transition metal alloys wer...
Using the first-principles calculations, the changes in the magnetic moment and the electronic struc...
The Fermi surfaces and Elliott-Yafet spin-mixing parameter (EYP) of several elemental metals are stu...
The L21-structure Fe2AlTi intermetallic compound is one of the two phases identified in Fe-Al-Ti sup...
Quantum-mechanical calculations are applied to examine magnetic and electronic properties of phases ...