The electronic structure of strained and unstrained Gd(0001) has been studied with spin-polarized photoemission spectroscopy and spin-polarized inverse photoemission spectroscopy. In this work, we observed that relaxation of the expansively strained in-plane crystal lattice constant, of Gd(0001) on Mo(112), significantly diminishes the differences in the electronic structure from that observed for Gd(0001) grown on W(110). The defects that are incorporated in the Gd films, with increasing film thickness, lead to an in-plane lattice relaxation. Such thickness dependent strain relief results a loss of net polarization for Gd(0001) grown on Mo(112) compared to the relatively unstrained Gd(0001) films grown on W(110)
The growth of strained thin films of gadolinium has been investigated with low-energy electron diffr...
We report on the structural, electronic and magnetic properties of a monolayer of GdAg2, forming a m...
Wave-vector-dependent exchange splitting in a local moment system The electronic structure of strain...
The electronic structure of strained and unstrained Gd(0001) has been studied with spin-polarized ph...
Abstract—The electronic structure of strained and unstrained Gd(0001) has been studied with spin-pol...
The electronic structure of strained and unstrained Gd(0001) surfaces has been studied both theoreti...
Strain is known to affect magnetism, with possible dramatic effects as suggested by the theoretical ...
Thin films of gadolinium, approximately 8 ML thick, have been grown on the corrugated (112) surface ...
Strain induced alteration of the gadolinium surface state The electronic structure of strained and u...
From spin-polarized inverse photoemission, the experimental spin-resolved unoccupied band structure ...
The thickness-dependent spin-polarized electronic structure of strained ultrathin and thin films of ...
The growth mode of domains of the hexagonal lattice of strained gadolinium deposited on Mo(112) has ...
The magnetic properties of strained thin films of gadolinium are characterized by a wave vector and ...
The thickness dependent spin-polarized electronic structure of strained thin and ultrathin films of ...
The relationship between magnetic behavior and the electronic structure of a 4f local moment ferroma...
The growth of strained thin films of gadolinium has been investigated with low-energy electron diffr...
We report on the structural, electronic and magnetic properties of a monolayer of GdAg2, forming a m...
Wave-vector-dependent exchange splitting in a local moment system The electronic structure of strain...
The electronic structure of strained and unstrained Gd(0001) has been studied with spin-polarized ph...
Abstract—The electronic structure of strained and unstrained Gd(0001) has been studied with spin-pol...
The electronic structure of strained and unstrained Gd(0001) surfaces has been studied both theoreti...
Strain is known to affect magnetism, with possible dramatic effects as suggested by the theoretical ...
Thin films of gadolinium, approximately 8 ML thick, have been grown on the corrugated (112) surface ...
Strain induced alteration of the gadolinium surface state The electronic structure of strained and u...
From spin-polarized inverse photoemission, the experimental spin-resolved unoccupied band structure ...
The thickness-dependent spin-polarized electronic structure of strained ultrathin and thin films of ...
The growth mode of domains of the hexagonal lattice of strained gadolinium deposited on Mo(112) has ...
The magnetic properties of strained thin films of gadolinium are characterized by a wave vector and ...
The thickness dependent spin-polarized electronic structure of strained thin and ultrathin films of ...
The relationship between magnetic behavior and the electronic structure of a 4f local moment ferroma...
The growth of strained thin films of gadolinium has been investigated with low-energy electron diffr...
We report on the structural, electronic and magnetic properties of a monolayer of GdAg2, forming a m...
Wave-vector-dependent exchange splitting in a local moment system The electronic structure of strain...