The spin-dependent surface electronic structure of ferromagnetic Fe(110) is investigated experimentally and theoretically. Spin-resolved, inverse-photoemission results show a complex multipeak structure close to the Fermi level. Part of it is surface derived with an unexpected spin dependence and light-polarization dependence. The puzzling experimental findings are interpreted on the basis of a comprehensive theoretical analysis. Electronic slab calculations find surface-related features, caused by the crystal-vacuum interface, only well below the Fermi level. Calculations of the (inverse) photoemission intensities within the relativistic one-step model based on a bulk band structure, but with a realistic surface barrier, reveal an addition...
The magnetism of Ni(110) and Fe(110) surfaces was investigated by electron capture spectroscopy. He+...
The magnetism of Ni(110) and Fe(110) surfaces was investigated by electron capture spectroscopy. He+...
The magnetism of Ni(110) and Fe(110) surfaces was investigated by electron capture spectroscopy. He+...
The spin-dependent surface electronic structure of ferromagnetic Fe(110) is investigated experimenta...
The spin-dependent surface electronic structure of ferromagnetic Fe(110) is investigated experimenta...
Thick Fe(110) films (> 50 ML) have been epitaxially grown on W(110) and studied by spin- and angle-r...
We have studied electronic structure of Fe-deposited Au(111) by performing ab initio density functio...
Resumen del trabajo presentado a la 10th Conferencia Fuerzas y Túnel, celebrada en Girona (España) d...
The surface electronic structure of band ferromagnets in the vicinity of the Fermi level is strongly...
We consider the details of the near-surface electronic band structure of a prototypical ferromagnet,...
Spin polarized photoemission is used to study the magnetic states associated with the clean iron (00...
High-resolution low-temperature angle-resolved photoemission spectroscopy of Fe(1 1 0) single crysta...
High-resolution low-temperature angle-resolved photoemission spectroscopy of Fe(1 1 0) single crysta...
High-resolution low-temperature angle-resolved photoemission spectroscopy of Fe(1 1 0) single crysta...
The magnetism of Ni(110) and Fe(110) surfaces was investigated by electron capture spectroscopy. He+...
The magnetism of Ni(110) and Fe(110) surfaces was investigated by electron capture spectroscopy. He+...
The magnetism of Ni(110) and Fe(110) surfaces was investigated by electron capture spectroscopy. He+...
The magnetism of Ni(110) and Fe(110) surfaces was investigated by electron capture spectroscopy. He+...
The spin-dependent surface electronic structure of ferromagnetic Fe(110) is investigated experimenta...
The spin-dependent surface electronic structure of ferromagnetic Fe(110) is investigated experimenta...
Thick Fe(110) films (> 50 ML) have been epitaxially grown on W(110) and studied by spin- and angle-r...
We have studied electronic structure of Fe-deposited Au(111) by performing ab initio density functio...
Resumen del trabajo presentado a la 10th Conferencia Fuerzas y Túnel, celebrada en Girona (España) d...
The surface electronic structure of band ferromagnets in the vicinity of the Fermi level is strongly...
We consider the details of the near-surface electronic band structure of a prototypical ferromagnet,...
Spin polarized photoemission is used to study the magnetic states associated with the clean iron (00...
High-resolution low-temperature angle-resolved photoemission spectroscopy of Fe(1 1 0) single crysta...
High-resolution low-temperature angle-resolved photoemission spectroscopy of Fe(1 1 0) single crysta...
High-resolution low-temperature angle-resolved photoemission spectroscopy of Fe(1 1 0) single crysta...
The magnetism of Ni(110) and Fe(110) surfaces was investigated by electron capture spectroscopy. He+...
The magnetism of Ni(110) and Fe(110) surfaces was investigated by electron capture spectroscopy. He+...
The magnetism of Ni(110) and Fe(110) surfaces was investigated by electron capture spectroscopy. He+...
The magnetism of Ni(110) and Fe(110) surfaces was investigated by electron capture spectroscopy. He+...