The structural evolution and magnetic property of Mn-rich clusters in GeMn thin films grown at 70 °C by molecular beam epitaxy has been systematically investigated by TEM, EDS and SQUID. It was discovered that, by controlling the Mn concentration, the morphology of coherent Mn-rich clusters can be manipulated from tadpole to nanocolumn shapes. For a particular Mn concentration, the critical thickness to form coherent Mn-rich clusters at 70 °C has been identified. Magnetic measurements show a complex magnetic behavior, which is mainly related to the Mn-rich clusters or precipitates. Our results also reveal that a flat surface of the Ge buffer layer plays an important role in producing vertically aligned tadpoles and nanocolumns. Copyright © ...
Structural and magnetic characterizations have been combined to investigate the growthkinetics of Ge...
Mn behaviors in the Ge0.96Mn0.04 thin films grown on Si (001) substrates by molecular beam epitaxy w...
Le système des nano-colonnes auto-assemblées de GeMn, riches en Mn et entourées d'une matrice de ger...
Magnetic and structural properties of a Ge0.96Mn0.04 thin film grown on Si has been investigated by ...
We present the first study relating structural parameters of precipitate-free Ge0.95Mn0.05 films to ...
International audienceResearch on diluted magnetic semiconductors (DMS) has generated great interest...
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...
While achieving high Curie temperatures (above room temperature) in diluted magnetic semiconductors ...
The growth of magnetic semiconductors with Curie temperature above room temperature is one of the ma...
Mn distribution behaviors and magnetic properties of the Ge0.96Mn0.04 films have been investigated. ...
In this study, the structural characteristics of GeMn diluted magnetic semiconductor (DMS) thin film...
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...
Controlled nanoscale self-assembly of magnetic entities in semiconductors opens novel perspectives f...
Structural and magnetic characterizations have been combined to investigate the growthkinetics of Ge...
Mn behaviors in the Ge0.96Mn0.04 thin films grown on Si (001) substrates by molecular beam epitaxy w...
Le système des nano-colonnes auto-assemblées de GeMn, riches en Mn et entourées d'une matrice de ger...
Magnetic and structural properties of a Ge0.96Mn0.04 thin film grown on Si has been investigated by ...
We present the first study relating structural parameters of precipitate-free Ge0.95Mn0.05 films to ...
International audienceResearch on diluted magnetic semiconductors (DMS) has generated great interest...
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...
While achieving high Curie temperatures (above room temperature) in diluted magnetic semiconductors ...
The growth of magnetic semiconductors with Curie temperature above room temperature is one of the ma...
Mn distribution behaviors and magnetic properties of the Ge0.96Mn0.04 films have been investigated. ...
In this study, the structural characteristics of GeMn diluted magnetic semiconductor (DMS) thin film...
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...
Controlled nanoscale self-assembly of magnetic entities in semiconductors opens novel perspectives f...
Structural and magnetic characterizations have been combined to investigate the growthkinetics of Ge...
Mn behaviors in the Ge0.96Mn0.04 thin films grown on Si (001) substrates by molecular beam epitaxy w...
Le système des nano-colonnes auto-assemblées de GeMn, riches en Mn et entourées d'une matrice de ger...