Hybrid nanostructured InSb - MnSb films were obtained by the pulsed laser deposition using the mechanical droplet separation. Films structure was characterized by different methods (electron diffraction, scanning electron microscopy, atomic and magnetic force microscopy). The negative magnetoresistance (nMR) takes place below 100 K. This temperature is several times more than the temperature at which the nMR occurs in homogenous In1-xMnxSb films. At low temperatures the spin-dependent scattering of the holes by the localized Mn2+ moments prevails. When the temperature rises, the low nMR is observed due to the weak spin-dependent scattering on magnetic inclusions
In1−xMnxSb crystals are grown with different Mn doping concentrations (x = 0.006, 0.01, 0.02, and 0....
Abstract.We have investigated the temperature effect on Mn dilution into InSb substrates by means of...
We have grown films of the half-metallic ferromagnet NiMnSb on single crystals of the narrow gap sem...
Hybrid nanostructured InSb - MnSb films were obtained by the pulsed laser deposition using the mecha...
Hybrid nanostructured InSb - MnSb films were obtained by the pulsed laser deposition using the mecha...
Hybrid nanostructured InSb - MnSb films were obtained by the pulsed laser deposition using the mecha...
Hybrid nanostructured InSb - MnSb films were obtained by the pulsed laser deposition using the mecha...
We have investigated the effect of magnetoresistance in the thin films of InSb:Mn using the data of ...
Magnetotransport, including the magnetoresistance (MR) and the Hall effect, isinvestigated in polycr...
Magnetotransport, including the magnetoresistance (MR) and the Hall effect, isinvestigated in polycr...
Abstract.Magnetotransport, including the magnetoresistance (MR) and the Hall effect, isinvestigated ...
In Mn-doped InSb single crystals an unusual, for nonmagnetic semiconductors, dependence on manganese...
We have investigated the temperature effect on Mn dilution into InSb substrates by means of high-res...
We have investigated the temperature effect on Mn dilution into InSb substrates by means of high-res...
In1−xMnxSb crystals are grown with different Mn doping concentrations (x = 0.006, 0.01, 0.02, and 0....
In1−xMnxSb crystals are grown with different Mn doping concentrations (x = 0.006, 0.01, 0.02, and 0....
Abstract.We have investigated the temperature effect on Mn dilution into InSb substrates by means of...
We have grown films of the half-metallic ferromagnet NiMnSb on single crystals of the narrow gap sem...
Hybrid nanostructured InSb - MnSb films were obtained by the pulsed laser deposition using the mecha...
Hybrid nanostructured InSb - MnSb films were obtained by the pulsed laser deposition using the mecha...
Hybrid nanostructured InSb - MnSb films were obtained by the pulsed laser deposition using the mecha...
Hybrid nanostructured InSb - MnSb films were obtained by the pulsed laser deposition using the mecha...
We have investigated the effect of magnetoresistance in the thin films of InSb:Mn using the data of ...
Magnetotransport, including the magnetoresistance (MR) and the Hall effect, isinvestigated in polycr...
Magnetotransport, including the magnetoresistance (MR) and the Hall effect, isinvestigated in polycr...
Abstract.Magnetotransport, including the magnetoresistance (MR) and the Hall effect, isinvestigated ...
In Mn-doped InSb single crystals an unusual, for nonmagnetic semiconductors, dependence on manganese...
We have investigated the temperature effect on Mn dilution into InSb substrates by means of high-res...
We have investigated the temperature effect on Mn dilution into InSb substrates by means of high-res...
In1−xMnxSb crystals are grown with different Mn doping concentrations (x = 0.006, 0.01, 0.02, and 0....
In1−xMnxSb crystals are grown with different Mn doping concentrations (x = 0.006, 0.01, 0.02, and 0....
Abstract.We have investigated the temperature effect on Mn dilution into InSb substrates by means of...
We have grown films of the half-metallic ferromagnet NiMnSb on single crystals of the narrow gap sem...