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Showing posts with the label Half-Metallic componudsShow All
First principles theoretical studies of half-metallic ferromagnetism in CrTe
Half–magnetization plateau stabilized by structural distortion in the antiferromagnetic Heisenberg model on a pyrochlore lattice
Prediction of Half-Metallic Properties in Non-transition Metal-based Binary Compounds X Bi (X = Ba, Sr and Ca) with Zinc-Blende and Wurtzite Structures
Spin-polarization in half-metals (invited)
Half-Metallic Ferromagnetism and Stability of Transition Metal Pnictides and Chalcogenides
Symmetry-Induced Hybridization in Hexagonal and Zinc-Blende CrTe Crystals
Improved half-metallic ferromagnetism of transition-metal pnictides and chalcogenides calculated with a modified Becke-Johnson exchange potential
The lattice distortion effect for zinc-blende CrAs and CrSb
Possible half-metallic ferromagnetism in zinc blende CrSb and CrAs (invited)
Half-metallic ferromagnetism in transition metal pnictides and chalcogenides with wurtzite structure
Half-metallic ferromagnetism and structural stability of zincblende phases of the transition-metal chalcogenides
Improved half-metallic ferromagnetism of transition-metal pnictides and chalcogenides calculated with a modified Becke-Johnson exchange potential
Zinc-blende compounds of transition elements with N, P, As, Sb, S, Se, and Te as half-metallic systems