Controlled nanoscale self-assembly of magnetic entities in semiconductors opens novel perspectives for the tailoring of magnetic semiconductor films and nanostructures with room temperature functionality. We report that a strongly directional self-assembly in growth direction in Mn-alloyed Ge is due to a stacking of individual Ge(1-x)Mn(x) clusters. The clusters represent the relevant entities for the magnetization of the material. They are formed of a core-shell structure displaying a Mn concentration gradient. While the magnetic moments seem to be carried by the shells of the clusters, their core is magnetically inactive
International audienceThe morphology and composition of self organized manganese (Mn)-rich nanocolum...
Nanoscale magnets with characteristic dimensions in the range of 1–100 nm are important in several a...
We present the first study relating structural parameters of precipitate-free Ge0.95Mn0.05 films to ...
Controlled nanoscale self-assembly of magnetic entities in semiconductors opens novel perspectives f...
Controlled nanoscale self-assembly of magnetic entities in semiconductors opens novel perspectives f...
The structural evolution and magnetic property of Mn-rich clusters in GeMn thin films grown at 70 °C...
International audienceManganese-doped germanium films are model systems for the study of nanospinoda...
Mn doping of group-IV semiconductors (Si/Ge) is achieved by embedding nanostructured Mn-la...
Magnetic semiconductors have attracted extensive attention due to their novel physical properties as...
Mn doping of group-IV semiconductors (Si/Ge) is achieved by embedding nanostructured Mn-layers in gr...
10 pages 2 colonnes revTex formattedWe report on the structural and magnetic properties of thin Ge(1...
Reflexion high-energy electron diffraction (RHEED), transmission electron microscopy (TEM) along wit...
The growth of magnetic semiconductors with Curie temperature above room temperature is one of the ma...
While achieving high Curie temperatures (above room temperature) in diluted magnetic semiconductors ...
Structural and magnetic characterizations have been combined to investigate the growthkinetics of Ge...
International audienceThe morphology and composition of self organized manganese (Mn)-rich nanocolum...
Nanoscale magnets with characteristic dimensions in the range of 1–100 nm are important in several a...
We present the first study relating structural parameters of precipitate-free Ge0.95Mn0.05 films to ...
Controlled nanoscale self-assembly of magnetic entities in semiconductors opens novel perspectives f...
Controlled nanoscale self-assembly of magnetic entities in semiconductors opens novel perspectives f...
The structural evolution and magnetic property of Mn-rich clusters in GeMn thin films grown at 70 °C...
International audienceManganese-doped germanium films are model systems for the study of nanospinoda...
Mn doping of group-IV semiconductors (Si/Ge) is achieved by embedding nanostructured Mn-la...
Magnetic semiconductors have attracted extensive attention due to their novel physical properties as...
Mn doping of group-IV semiconductors (Si/Ge) is achieved by embedding nanostructured Mn-layers in gr...
10 pages 2 colonnes revTex formattedWe report on the structural and magnetic properties of thin Ge(1...
Reflexion high-energy electron diffraction (RHEED), transmission electron microscopy (TEM) along wit...
The growth of magnetic semiconductors with Curie temperature above room temperature is one of the ma...
While achieving high Curie temperatures (above room temperature) in diluted magnetic semiconductors ...
Structural and magnetic characterizations have been combined to investigate the growthkinetics of Ge...
International audienceThe morphology and composition of self organized manganese (Mn)-rich nanocolum...
Nanoscale magnets with characteristic dimensions in the range of 1–100 nm are important in several a...
We present the first study relating structural parameters of precipitate-free Ge0.95Mn0.05 films to ...