International audienceThe morphology and composition of self organized manganese (Mn)-rich nanocolumns embedded in germanium (Ge) thin films were characterized at the atomic scale and in three dimensions with high resolution transmission electron microscopy and atom probe tomography. Experiments revealed Mn-enriched nano-columns of 3 nm in diameter with various morphologies. Their Mn-content was found smaller than that of the expected equilibrium phases and chemical fluctuations along the growth axis were additionally observed. By contrast, less than 0.05% of Mn was measured in the Ge-matrix. These results were correlated to the magnetic properties and allowed understanding the magnetic behavior of the nanocolumns
Controlled nanoscale self-assembly of magnetic entities in semiconductors opens novel perspectives f...
X-ray absorption spectroscopy of epitaxial GeMn thin films reveals an experimentally indistinguishab...
Reflexion high-energy electron diffraction (RHEED), transmission electron microscopy (TEM) along wit...
International audienceThe morphology and composition of self organized manganese (Mn)-rich nanocolum...
International audienceManganese-doped germanium films are model systems for the study of nanospinoda...
While achieving high Curie temperatures (above room temperature) in diluted magnetic semiconductors ...
10 pages 2 colonnes revTex formattedWe report on the structural and magnetic properties of thin Ge(1...
Nowadays self-organized semiconductor nanostructures have motivated many studies due to the presence...
International audienceThe emerging field of spintronics would be dramatically boosted if room-temper...
We report a 'superlattice' growth method to produce well-aligned magnetic MnGe nanocolumns and nanow...
The structural evolution and magnetic property of Mn-rich clusters in GeMn thin films grown at 70 °C...
We investigate the structural and morphological evolutions of Ge1-xMnx films, grown by molecular bea...
We present a comprehensive study relating the nanostructure of Ge0.95Mn0.05 films to their magnetic ...
Controlled nanoscale self-assembly of magnetic entities in semiconductors opens novel perspectives f...
International audienceChanging the morphology of the growing surface and the nature of residual impu...
Controlled nanoscale self-assembly of magnetic entities in semiconductors opens novel perspectives f...
X-ray absorption spectroscopy of epitaxial GeMn thin films reveals an experimentally indistinguishab...
Reflexion high-energy electron diffraction (RHEED), transmission electron microscopy (TEM) along wit...
International audienceThe morphology and composition of self organized manganese (Mn)-rich nanocolum...
International audienceManganese-doped germanium films are model systems for the study of nanospinoda...
While achieving high Curie temperatures (above room temperature) in diluted magnetic semiconductors ...
10 pages 2 colonnes revTex formattedWe report on the structural and magnetic properties of thin Ge(1...
Nowadays self-organized semiconductor nanostructures have motivated many studies due to the presence...
International audienceThe emerging field of spintronics would be dramatically boosted if room-temper...
We report a 'superlattice' growth method to produce well-aligned magnetic MnGe nanocolumns and nanow...
The structural evolution and magnetic property of Mn-rich clusters in GeMn thin films grown at 70 °C...
We investigate the structural and morphological evolutions of Ge1-xMnx films, grown by molecular bea...
We present a comprehensive study relating the nanostructure of Ge0.95Mn0.05 films to their magnetic ...
Controlled nanoscale self-assembly of magnetic entities in semiconductors opens novel perspectives f...
International audienceChanging the morphology of the growing surface and the nature of residual impu...
Controlled nanoscale self-assembly of magnetic entities in semiconductors opens novel perspectives f...
X-ray absorption spectroscopy of epitaxial GeMn thin films reveals an experimentally indistinguishab...
Reflexion high-energy electron diffraction (RHEED), transmission electron microscopy (TEM) along wit...