First-Principle investigation of the structural, electronic and magnetic properties of Co2VIn and CoVIn Heusler compounds
View/ Open
Date
2017-01-05Author
Muthui, Zipporah1,2,a),b)
Pathak, Rohit2,a)
Musembi, Robinson1,a)
Mwabora, Julius1,a)
Skomski, Ralph3,a)
Kashyap, Arti2,a),c)
Metadata
Show full item recordAbstract
Investigation of the structural, electronic and magnetic properties of full-Heusler Co2VIn as well as half-Heusler CoVIn Cobalt based Heusler compounds using density functional theory (DFT) leads to the general conclusion that Co2VIn and CoVIn are half-metallic materials with a gap at the Fermi level in the minority states and majority states respectively. A Hubbard-like Coulomb correlation term U has been included in the DFT (DFT+U) for the computation of the electronic and magnetic properties of the compounds. The structural properties have been calculated for the paramagnetic and ferromagnetic phases, and both Co2VIn and CoVIn are found to be stable in the ferromagnetic phase. The calculated magnetic moments are 2 μB2 μB and 0.9 μB0.9 μB per formula unit for Co2VIn and CoVIn respectively.
Collections
- Physics [55]