We present an accurate first-principles study of magnetism and energetics of single Mn impurities and Mn dimers in Si. Our results, in general agreement with available experiments, show that (i) Mn atoms tend to aggregate, the formation energy of dimers being lower than the sum of the separate constituents, (ii) ferromagnetic coupling is favored between the Mn atoms constituting the dimers in p-type Si, switching to an antiferromagnetic coupling in n-type Si, (iii) Mn atoms show donors (acceptor) properties in p-type (n-type) Si, therefore they tend to compensate doping, while dimers being neutral or acceptors allow for Si to be doped p-type. (C) 2004 American Institute of Physics
Using first-principles methods, we systematically study the mechanism of defect formation and electr...
Ultrathin films of manganese silicides on silicon are of relevance as a possible material system for...
Ultrathin films of manganese silicides on silicon are of relevance as a possible material system for...
We present an accurate first-principles study of magnetism and energetics of single Mn impurities an...
Using hybrid exchange density functional calculations we show that the type of background carriers h...
Diluted Magnetic Semiconductors (DMS), which can be very useful for spintronics, were first reported...
We present results of the magnetic, structural and chemical characterizations of Mn<sup>+</...
Two Si-based spintronic materials, a Mn-Si digital ferromagnetic heterostructure ({delta}-layer of M...
Density functional theory (DFT) calculations are used to study the epitaxial growth and the magnetic...
Ultrathin films of manganese silicides on silicon are of relevance as a possible material system for...
We report on the structural, electronic, and magnetic properties of manganese-doped silicon clusters...
Density functional theory (DFT) calculations are used to study the epitaxial growth and the magnetic...
We present results of the magnetic, structural and chemical characterizations of Mn<sup>+</...
Using density-functional theory within the generalized gradient approximation, we show that Si-based...
We report on the structural, electronic, and magnetic properties of manganese-doped silicon clusters...
Using first-principles methods, we systematically study the mechanism of defect formation and electr...
Ultrathin films of manganese silicides on silicon are of relevance as a possible material system for...
Ultrathin films of manganese silicides on silicon are of relevance as a possible material system for...
We present an accurate first-principles study of magnetism and energetics of single Mn impurities an...
Using hybrid exchange density functional calculations we show that the type of background carriers h...
Diluted Magnetic Semiconductors (DMS), which can be very useful for spintronics, were first reported...
We present results of the magnetic, structural and chemical characterizations of Mn<sup>+</...
Two Si-based spintronic materials, a Mn-Si digital ferromagnetic heterostructure ({delta}-layer of M...
Density functional theory (DFT) calculations are used to study the epitaxial growth and the magnetic...
Ultrathin films of manganese silicides on silicon are of relevance as a possible material system for...
We report on the structural, electronic, and magnetic properties of manganese-doped silicon clusters...
Density functional theory (DFT) calculations are used to study the epitaxial growth and the magnetic...
We present results of the magnetic, structural and chemical characterizations of Mn<sup>+</...
Using density-functional theory within the generalized gradient approximation, we show that Si-based...
We report on the structural, electronic, and magnetic properties of manganese-doped silicon clusters...
Using first-principles methods, we systematically study the mechanism of defect formation and electr...
Ultrathin films of manganese silicides on silicon are of relevance as a possible material system for...
Ultrathin films of manganese silicides on silicon are of relevance as a possible material system for...