It is shown that substitution of C or N for O recently proposed as a way to create ferromagnetism in otherwise nonmagnetic oxide insulators is curtailed by formation of impurity pairs, and the resultant C2 spin=1 dimers as well as the isoelectronic N22+ interact antiferromagnetically in p-type MgO. For C-doped ZnO, however, we demonstrate using the Heyd-Scuseria-Ernzerhof hybrid functional that a resonance of the spin-polarized C2 ppπ* states with the host conduction band results in a long-range ferromagnetic interaction. Magnetism of open-shell impurity molecules is proposed as a possible route to d0-ferromagnetism in oxide spintronic materials
For advancement in future spintronics, the diluted magnetic semiconductors (DMSs) might be understoo...
Using first-principles density functional calculations, at both generalized gradient approximation (...
Zinc oxide (ZnO) that contains non-magnetic ionic dopants, such as nitrogen (N)-doped zinc oxide (Zn...
It is shown that substitution of C or N for O recently proposed as a way to create ferromagnetism in...
We report spin-polarized density functional calculations of ferromagnetic properties for a series of...
The properties of dilute magnetic semiconductors have been studied by combined ab initio, Monte Carl...
The introduction of ferromagnetic order in ZnO results in a transparent piezoelectric ferromagnet an...
We present an ab initio study of carbon and nitrogen substituting oxygen in zinc oxide structure. De...
We have studied the influence of intrinsic and extrinsic defects in the magnetic and electrical tran...
Based on first-principles calculations, we have studied the occurrence of spin polarization in the m...
We show both theoretical and experimental evidences of the appearance of ferromagnetism in MgO thin ...
Magnetism without d-orbital electrons seems to be unrealistic; however, recent observations of magne...
We used a synergic Co-edge X-ray absorption spectroscopy (XAS) and density functional theory calcula...
The simultaneous manipulation of both charge and spin has made diluted magnetic semiconductors (DMS)...
We show both theoretical and experimental evidences of the appearance of ferromagnetism in MgO thin ...
For advancement in future spintronics, the diluted magnetic semiconductors (DMSs) might be understoo...
Using first-principles density functional calculations, at both generalized gradient approximation (...
Zinc oxide (ZnO) that contains non-magnetic ionic dopants, such as nitrogen (N)-doped zinc oxide (Zn...
It is shown that substitution of C or N for O recently proposed as a way to create ferromagnetism in...
We report spin-polarized density functional calculations of ferromagnetic properties for a series of...
The properties of dilute magnetic semiconductors have been studied by combined ab initio, Monte Carl...
The introduction of ferromagnetic order in ZnO results in a transparent piezoelectric ferromagnet an...
We present an ab initio study of carbon and nitrogen substituting oxygen in zinc oxide structure. De...
We have studied the influence of intrinsic and extrinsic defects in the magnetic and electrical tran...
Based on first-principles calculations, we have studied the occurrence of spin polarization in the m...
We show both theoretical and experimental evidences of the appearance of ferromagnetism in MgO thin ...
Magnetism without d-orbital electrons seems to be unrealistic; however, recent observations of magne...
We used a synergic Co-edge X-ray absorption spectroscopy (XAS) and density functional theory calcula...
The simultaneous manipulation of both charge and spin has made diluted magnetic semiconductors (DMS)...
We show both theoretical and experimental evidences of the appearance of ferromagnetism in MgO thin ...
For advancement in future spintronics, the diluted magnetic semiconductors (DMSs) might be understoo...
Using first-principles density functional calculations, at both generalized gradient approximation (...
Zinc oxide (ZnO) that contains non-magnetic ionic dopants, such as nitrogen (N)-doped zinc oxide (Zn...