Strain relaxation studies in epitaxial magnetite, Fe3O4, thin films grown on MgAl2O4(100) substrates are reported. The study shows that the films were relaxed in line with the theoretical model prediction with a critical thickness, t(c)=5 nm. Antiphase boundaries (APBs) are not expected to form in Fe3O4 films grown on MgAl2O4 substrates because both film and substrate have the same crystal symmetry. In contrast, our study reveals the formation of APBs within the Fe3O4 films. Our analysis shows that the APBs in a Fe3O4/MgAl2O4 heteroepitaxial system are formed by partial dislocations, which accommodate the misfit. This formation mechanism of APBs is fundamentally different from the one found in the Fe3O4/MgO system, where APBs are formed as ...
The occurrence of antiferromagnetic coupling at antiphase domain boundaries (APBs) of ferromagnetic ...
The complex and intriguing properties of the ferrimagnetic half metal magnetite (Fe3O4) are of conti...
The occurrence of anti-phase domain boundaries (APBs) in epitaxial Fe3O4 films has a strong influenc...
Strain relaxation studies in epitaxial magnetite (Fe3O4) thin films grown on MgO (100) substrates us...
THESIS 8224The strain relaxation and magneto transport properties of epitaxial magnetite (Fe3O4) thi...
Thin magnetite (Fe304) films and Fe304/MgO multilayers have been epitaxially grown by Molecular Beam...
Antiphase boundaries in spinel ferrites have been considered as the functional elements with great p...
Thin magnetite (Fe304) films and Fe304/MgO multilayers have been epitaxially grown by Molecular Beam...
Thin magnetite (Fe304) films and Fe304/MgO multilayers have been epitaxially grown by Molecular Beam...
Thin magnetite (Fe304) films and Fe304/MgO multilayers have been epitaxially grown by Molecular Beam...
Thin magnetite (Fe304) films and Fe304/MgO multilayers have been epitaxially grown by Molecular Beam...
Fe3O4 is a candidate material for future spintronic device applications due to its predicted half me...
Fe3O4 thin films with a thickness of about 140 nm have been deposited on MgO ~001! substrates by rea...
Recent studies show that the magnetic properties of epitaxial thin films of magnetite (Fe3O4) deviat...
Recent studies show that the magnetic properties of epitaxial thin films of magnetite (Fe3O4) deviat...
The occurrence of antiferromagnetic coupling at antiphase domain boundaries (APBs) of ferromagnetic ...
The complex and intriguing properties of the ferrimagnetic half metal magnetite (Fe3O4) are of conti...
The occurrence of anti-phase domain boundaries (APBs) in epitaxial Fe3O4 films has a strong influenc...
Strain relaxation studies in epitaxial magnetite (Fe3O4) thin films grown on MgO (100) substrates us...
THESIS 8224The strain relaxation and magneto transport properties of epitaxial magnetite (Fe3O4) thi...
Thin magnetite (Fe304) films and Fe304/MgO multilayers have been epitaxially grown by Molecular Beam...
Antiphase boundaries in spinel ferrites have been considered as the functional elements with great p...
Thin magnetite (Fe304) films and Fe304/MgO multilayers have been epitaxially grown by Molecular Beam...
Thin magnetite (Fe304) films and Fe304/MgO multilayers have been epitaxially grown by Molecular Beam...
Thin magnetite (Fe304) films and Fe304/MgO multilayers have been epitaxially grown by Molecular Beam...
Thin magnetite (Fe304) films and Fe304/MgO multilayers have been epitaxially grown by Molecular Beam...
Fe3O4 is a candidate material for future spintronic device applications due to its predicted half me...
Fe3O4 thin films with a thickness of about 140 nm have been deposited on MgO ~001! substrates by rea...
Recent studies show that the magnetic properties of epitaxial thin films of magnetite (Fe3O4) deviat...
Recent studies show that the magnetic properties of epitaxial thin films of magnetite (Fe3O4) deviat...
The occurrence of antiferromagnetic coupling at antiphase domain boundaries (APBs) of ferromagnetic ...
The complex and intriguing properties of the ferrimagnetic half metal magnetite (Fe3O4) are of conti...
The occurrence of anti-phase domain boundaries (APBs) in epitaxial Fe3O4 films has a strong influenc...