A method for the synthesis of room-temperature ferromagnetic dilute semiconductor Ge1-xMnx (5 % < x < 8 %) quantum dots by molecular beam epitaxy by selective growth on hydrogen terminated silicon (100) surface is presented. The functionalized substrates, as well as the nanostructures, were characterized in situ by reflection high-energy electron diffraction. The quantum dots density and equivalent radius were extracted from field emission scanning electron microscope pictures, obtained ex-situ. Magnetic characterizations were performed by superconducting quantum interference device vibrating sample magnetometry revealing that ferromagnetic order is maintained up to room temperature: two different ferromagnetic phases were identified by the...
Effective manipulation of magnetic spin within a semiconductor leading to a search for ferromagnets ...
Mn0.05Ge0.95 quantum dots (QDs) samples were grown by molecular beam epitaxy on Si substrates and 15...
In this paper theoretical modeling of formation and growth of germanium–silicon quantum dots in the ...
(Ga,Mn)As magnetic semiconductor quantum dots were fabricated on Si(001) substrates by droplet epita...
Electric-field manipulation of ferromagnetism has the potential for developing a new generation of e...
Electric-field manipulation of ferromagnetism has the potential for developing a new generation of e...
In this study, we demonstrate an original elaboration route for producing a Mn-doped Ge self-assembl...
Abstract: Self-assembled Fe0.02Ge0.98 dilute magnetic quantum dots show a high Curie temperature abo...
Magnetic semiconductors have attracted extensive attention due to their novel physical properties as...
A new technique for producing electron systems with quantum confinement in three dimensions, quantum...
In this paper, we present a method to order low temperature (LT) self-assembled ferromagnetic In1-xM...
The visible luminescence from Ge nanoparticles and nanocrystallites has generated interest due to th...
[[abstract]]Self-assembled In1-x Mnx As quantum dots (0.19 [less-than or equal to] x [less-than or e...
Even though self-organized semiconductor quantum dots have had a history close to a decade, research...
[[abstract]]Self-assembled In0.79Mn0.21As quantum dots were successfully grown on GaAs (001) substra...
Effective manipulation of magnetic spin within a semiconductor leading to a search for ferromagnets ...
Mn0.05Ge0.95 quantum dots (QDs) samples were grown by molecular beam epitaxy on Si substrates and 15...
In this paper theoretical modeling of formation and growth of germanium–silicon quantum dots in the ...
(Ga,Mn)As magnetic semiconductor quantum dots were fabricated on Si(001) substrates by droplet epita...
Electric-field manipulation of ferromagnetism has the potential for developing a new generation of e...
Electric-field manipulation of ferromagnetism has the potential for developing a new generation of e...
In this study, we demonstrate an original elaboration route for producing a Mn-doped Ge self-assembl...
Abstract: Self-assembled Fe0.02Ge0.98 dilute magnetic quantum dots show a high Curie temperature abo...
Magnetic semiconductors have attracted extensive attention due to their novel physical properties as...
A new technique for producing electron systems with quantum confinement in three dimensions, quantum...
In this paper, we present a method to order low temperature (LT) self-assembled ferromagnetic In1-xM...
The visible luminescence from Ge nanoparticles and nanocrystallites has generated interest due to th...
[[abstract]]Self-assembled In1-x Mnx As quantum dots (0.19 [less-than or equal to] x [less-than or e...
Even though self-organized semiconductor quantum dots have had a history close to a decade, research...
[[abstract]]Self-assembled In0.79Mn0.21As quantum dots were successfully grown on GaAs (001) substra...
Effective manipulation of magnetic spin within a semiconductor leading to a search for ferromagnets ...
Mn0.05Ge0.95 quantum dots (QDs) samples were grown by molecular beam epitaxy on Si substrates and 15...
In this paper theoretical modeling of formation and growth of germanium–silicon quantum dots in the ...