High T ferromagnetic inverse Heusler alloys: A comparative study of FeRhSi and FeRhGe
arXiv:2102.10967 · doi:10.1103/PhysRevB.104.094402
Abstract
We report the results of experimental investigations on structural, magnetic, resistivity, caloric properties of FeRhZ (Z=Si,Ge) along with \textit{ab-initio} band structure calculations using first principle simulations. Both these alloys are found to crystallize in inverse Heusler structure but with disorder in tetrahedral sites between Fe and Rh. FeRhSi has saturation moment of 5.00 and while its counterpart has 5.19 . Resistivity measurement reveals metallic nature in both of them. Theoretical simulations using generalized gradient approximation(GGA) predict inverse Heusler structure with ferromagnetic ordering as ground state for both the alloys. However it underestimates the experimentally observed moments. GGA+ approach, with Hubbard values estimated from density functional perturbation theory helps to improve the comparison of the experimental results. FeRhSi is found to be half metallic ferromagnet while FeRhGe is not. Varying values on Fe and Rh sites does not change the net moment much in FeRhSi, unlike in FeRhGe. Relatively small exchange splitting of orbitals in FeRhGe compared to that of FeRhSi is the reason for not opening the band gap in the minority spin channel in the former. High ordering temperature and moment make FeRhSi useful for spintronics applications.
Full Heusler alloys, inverse Heusler alloys, Fe2RhSi, Fe2RhGe, half metals, high T_C ferromagnets, spintronics, 9 figures, 2 tables, Rh- based Heusler alloys
References in corpus (12)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- Advanced capabilities for materials modelling with Quantum ESPRESSO
- The Alloy Theoretic Automated Toolkit: A User Guide
- Half-metallic ferromagnets: From band structure to many-body effects
- Design of compensated ferrimagnetic Heusler alloys for giant tunable exchange bias
- Bipolar Magnetic Semiconductors: A New Class of Spintronics Materials
- Superconductivity in the Heusler Family of Intermetallics
- Giant inverse magnetocaloric effect near room temperature in Co substituted NiMnSb Heusler alloys
- Prediction of triple point fermions in simple half-Heusler topological insulators
- Half-Heusler topological insulators
- Structural, electronic, magnetic and transport properties of equiatomic quaternary Heusler Alloy CoRhMnGe: Theory and Experiment
- Spin gapless semiconductors