6533b837fe1ef96bd12a269e
RESEARCH PRODUCT
Electronic structure calculations forZnFe2O4
Claudia FelserGerhard H. FecherS. SolimanA. Elfalakysubject
PhysicsCondensed matter physicsOctahedral symmetryElectronic structureMagnetic semiconductorSymmetry (geometry)Local-density approximationCondensed Matter PhysicsGround stateElectronic band structureElectronic Optical and Magnetic MaterialsSpin-½description
Local density approximation was applied to scrutinize the electronic structure and magnetic properties of the spinel ferrite ${\mathrm{ZnFe}}_{2}{\mathrm{O}}_{4}$. Various cation distributions were established to obtain the ground state for the system. In magnetic crystals, the position of the atoms is not enough for symmetry determination. A structure prediction by decreasing the octahedral point group symmetry ${\mathrm{O}}_{h}$ of Fe to ${\mathrm{D}}_{4h}$, ${\mathrm{C}}_{4v}$, and ${\mathrm{C}}_{3v}$ was carried out. The effect of the exchange and correlation terms on the band structure of ${\mathrm{ZnFe}}_{2}{\mathrm{O}}_{4}$ was studied by the generalized gradient approximation $+$ the Hubbard correlation parameter $U$. The optimized structure parameters, which are in good agreement with the experimental values, were used as the input parameters for the calculations. In agreement with experimental studies, the semiconducting behavior for the studied compound, taking the effect of spin arrangement on symmetry into account, was obtained.
year | journal | country | edition | language |
---|---|---|---|---|
2011-02-22 | Physical Review B |