Self-assembled Fe0.02Ge0.98 dilute magnetic quantum dots show a high Curie temperature above 400 K. Such extraordinary magnetic properties can potentially resolve the critical problem of power dissipation in today's integrated circuits and lead to the realization of a new class of spintronics devices
Throughout the past several years synthetic techniques for preparing intrinsic, monodisperse semicon...
Among many efforts in the research of van der Waals (vdW) magnetic materials, increasing the Curie t...
The Curie temperature of diluted magnetic semiconductor (DMS) nanowires and nanoslabs is investigate...
Abstract: Self-assembled Fe0.02Ge0.98 dilute magnetic quantum dots show a high Curie temperature abo...
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...
Cr-doped InAs self-organized diluted magnetic quantum dots (QDs) are grown by low-temperature molecu...
[[abstract]]Self-assembled In1-x Mnx As quantum dots (0.19 [less-than or equal to] x [less-than or e...
[[abstract]]Self-assembled In0.79 Mn0.21 As quantum dots were successfully grown on GaAs (001) subst...
Despite a long history of success in formation of transition-metal-doped quantum dots (QDs), the ori...
International audienceRoom-temperature ferromagnetism has been one of the most sought after topics i...
Magnetic nanoparticles (MNPs) possessing low Curie temperatures (TC’s) offer the possibility for sel...
As electronic devices continue to shrink to just a few nanometers, enabling the integration of billi...
(Ga,Mn)As magnetic semiconductor quantum dots were fabricated on Si(001) substrates by droplet epita...
A method for the synthesis of room-temperature ferromagnetic dilute semiconductor Ge1-xMnx (5 % < x ...
Throughout the past several years synthetic techniques for preparing intrinsic, monodisperse semicon...
Among many efforts in the research of van der Waals (vdW) magnetic materials, increasing the Curie t...
The Curie temperature of diluted magnetic semiconductor (DMS) nanowires and nanoslabs is investigate...
Abstract: Self-assembled Fe0.02Ge0.98 dilute magnetic quantum dots show a high Curie temperature abo...
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...
Cr-doped InAs self-organized diluted magnetic quantum dots (QDs) are grown by low-temperature molecu...
[[abstract]]Self-assembled In1-x Mnx As quantum dots (0.19 [less-than or equal to] x [less-than or e...
[[abstract]]Self-assembled In0.79 Mn0.21 As quantum dots were successfully grown on GaAs (001) subst...
Despite a long history of success in formation of transition-metal-doped quantum dots (QDs), the ori...
International audienceRoom-temperature ferromagnetism has been one of the most sought after topics i...
Magnetic nanoparticles (MNPs) possessing low Curie temperatures (TC’s) offer the possibility for sel...
As electronic devices continue to shrink to just a few nanometers, enabling the integration of billi...
(Ga,Mn)As magnetic semiconductor quantum dots were fabricated on Si(001) substrates by droplet epita...
A method for the synthesis of room-temperature ferromagnetic dilute semiconductor Ge1-xMnx (5 % < x ...
Throughout the past several years synthetic techniques for preparing intrinsic, monodisperse semicon...
Among many efforts in the research of van der Waals (vdW) magnetic materials, increasing the Curie t...
The Curie temperature of diluted magnetic semiconductor (DMS) nanowires and nanoslabs is investigate...