Ba{0.4}Rb{0.6}Mn2As2: A Prototype Half-Metallic Ferromagnet
arXiv:1507.06679 · doi:10.1103/PhysRevB.92.174401
Abstract
Half-metallic ferromagnetism (FM) in single-crystal Ba{0.39(1)}Rb{0.61(1)}Mn2As2 below its Curie temperature TC = 103(2) K is reported. The magnetization M versus applied magnetic field H isotherm data at 1.8 K show complete polarization of the itinerant doped-hole magnetic moments that are introduced by substituting Rb for Ba. The material exhibits extremely soft FM, with unobservably small remanent magnetization and coercive field. Surprisingly, and contrary to typical itinerant FMs, the M(H) data follow the Arrott-plot paradigm that is based on a mean-field theory of local-moment FMs. The in-plane electrical resistivity data are fitted well by an activated-T^2 expression for T < TC, whereas the data sharply deviate from this model for T > TC. Hence the activated-T^2 resistivity model is an excellent diagnostic for determining the onset of half-metallic FM in this compound, which in turn demonstrates the presence of a strong correlation between the electronic transport and magnetic properties of the material. Together with previous data on 40% hole-doped Ba{0.6}K{0.4}Mn2As2, these measurements establish 61%-doped Ba{0.39}Rb{0.61}Mn2As2 as a prototype for a new class of half-metallic ferromagnets in which all the itinerant carriers in the material are ferromagnetic.
5 pages, 6 figures
References in corpus (6)
- High-temperature superconductivity in iron-based materials
- Half-metallic ferromagnets: From band structure to many-body effects
- Half-Metallic Ferromagnetism in the Heusler Compound CoFeSi revealed by Resistivity, Magnetoresistance, and Anomalous Hall Effect measurements
- Electronic structure and Magnetism in BaMnAs and BaMnSb
- Itinerant ferromagnetism in the As 4 conduction band of BaKMnAs identified by x-ray magnetic circular dichroism
- Complex itinerant ferromagnetism in noncentrosymmetric Cr11Ge19
Cited by in corpus (11)
- Magnetic hexadecapole order and magnetopiezoelectric metal in BaKMnAs
- Antiferromagnetism in trigonal SrMn2As2 and CaMn2As2 single crystals
- Antiferromagnetism in semiconducting SrMn2Sb2 and BaMn2Sb2 single crystals
- Metallic behavior induced by potassium doping of the trigonal antiferromagnetic insulator EuMn2As2
- A new class of half-metallic ferromagnets from first principles
- Importance of effective dimensionality in manganese pnictides
- Robust antiferromagnetic spin waves across the metal-insulator transition in hole-doped BaMnAs
- Correlations and incipient antiferromagnetic order within the linear Mn chains of metallic TiMnBi
- BaMnP: Highest magnetic ordering temperature 122-pnictide compound
- PhD Thesis: Electronic correlations in multiorbital systems
- CsMnAs: A layered tetragonal transition-metal pnictide compound with antiferromagnetic ground state