paper

Density-functional theory study of half-metallic heterostructures: interstitial Mn in Si

arXiv:cond-mat/0702200 · doi:10.1103/PhysRevLett.98.117202

Abstract

Using density-functional theory within the generalized gradient approximation, we show that Si-based heterostructures with 1/4 layer -doping of {\em interstitial} Mn (Mn) are half-metallic. For Mn concentrations of 1/2 or 1 layer, the states induced in the band gap of -doped heterostructures still display high spin polarization, about 85% and 60%, respectively. The proposed heterostructures are more stable than previously assumed -layers of {\em substitutional} Mn. Contrary to wide-spread belief, the present study demonstrates that {\em interstitial} Mn can be utilized to tune the magnetic properties of Si, and thus provides a new clue for Si-based spintronics materials.

5 pages, 4 figures, PRL accepted

Density-functional theory study of half-metallic heterostructures: interstitial Mn in Si · wovepaper