Various microstructural and chemical analysis techniques were applied to study two types (type-A and B) of self-assembled laterally aligned Fe nanowires (NWs) fabricated by molecular beam epitaxy on a ZnS buffer layer. The formation of the three-dimensional shapes of these NWs was found to be driven by the principle of surface energy minimization. We have provided phenomenological models to address the factors affecting the observed topological shape of these NWs, including the role of the lattice relationship between the Fe NWs and the underlying buffer layer, growth temperature, Fe nominal coverage and substrate orientation. Magnetic hysteresis measurements were performed at different temperature, demonstrating the Fe NWs possess a coerci...
FePd nanowires (NWs) with different compositions have been grown into anodized aluminum oxide templa...
The properties of iron nanostructures prepared by shallow incidence molecular beam epitaxy on facete...
The growth and reactive dewetting of ultrathin films of iron oxides supported on Re(0001) surfaces h...
Various microstructural and chemical analysis techniques were applied to study two types (type-A and...
In recent years, magnetic nanowires (NWs) have been extensively studied because of their novel physi...
Two types of self-assembled Fe nanowires (NWs) were grown by molecular beam epitaxy on ZnS(1 0 0) su...
International audienceWe report a detailed magnetic study of a new type of self-organized nanowires ...
cited By 11International audienceIron nanostructures grown by focused electron beam induced depositi...
Iron nanostructures grown by focused electron beam induced deposition (FEBID) are promising for appl...
Proceedings of ECOSS 2006 (Paris)International audienceHomoepitaxy of W(110) and Mo(110) is performe...
Abstract: Systematic investigations of magnetization behavior performed on planar arrays of 30 nm wi...
Interest in magnetic nanostructures has increased rapidly because of their potential applications in...
The growth and reaction of Fe on a ZnS(1 0 0) substrate are studied in situ and with high lateral re...
The production of nanowire materials, uniformly oriented along any arbitrarily chosen crystal orient...
Templated growth and properties of iron nanowires: anisotropic electron states of the quasi 1D coppe...
FePd nanowires (NWs) with different compositions have been grown into anodized aluminum oxide templa...
The properties of iron nanostructures prepared by shallow incidence molecular beam epitaxy on facete...
The growth and reactive dewetting of ultrathin films of iron oxides supported on Re(0001) surfaces h...
Various microstructural and chemical analysis techniques were applied to study two types (type-A and...
In recent years, magnetic nanowires (NWs) have been extensively studied because of their novel physi...
Two types of self-assembled Fe nanowires (NWs) were grown by molecular beam epitaxy on ZnS(1 0 0) su...
International audienceWe report a detailed magnetic study of a new type of self-organized nanowires ...
cited By 11International audienceIron nanostructures grown by focused electron beam induced depositi...
Iron nanostructures grown by focused electron beam induced deposition (FEBID) are promising for appl...
Proceedings of ECOSS 2006 (Paris)International audienceHomoepitaxy of W(110) and Mo(110) is performe...
Abstract: Systematic investigations of magnetization behavior performed on planar arrays of 30 nm wi...
Interest in magnetic nanostructures has increased rapidly because of their potential applications in...
The growth and reaction of Fe on a ZnS(1 0 0) substrate are studied in situ and with high lateral re...
The production of nanowire materials, uniformly oriented along any arbitrarily chosen crystal orient...
Templated growth and properties of iron nanowires: anisotropic electron states of the quasi 1D coppe...
FePd nanowires (NWs) with different compositions have been grown into anodized aluminum oxide templa...
The properties of iron nanostructures prepared by shallow incidence molecular beam epitaxy on facete...
The growth and reactive dewetting of ultrathin films of iron oxides supported on Re(0001) surfaces h...