Antisite Domains in Double Perovskite Ferromagnets: Impact on Magnetotransport and Half-metallicity
arXiv:1009.1702 · doi:10.1209/0295-5075/94/47004
Abstract
Several double perovskite materials of the form A_2BB'O_6 exhibit high ferromagnetic T_c, and significant low field magnetoresistance. They are also a candidate source of spin polarized electrons. The potential usefulness of these materials is, however, frustrated by mislocation of the B and B' ions, which do not organise themselves in the ideal alternating structure. The result is a strong dependence of physical properties on preparative conditions, reducing the magnetization and destroying the half-metallicity. We provide the first results on the impact of spatially correlated antisite disorder, as observed experimentally, on the ferromagnetic double perovskites. The antisite domains suppress magnetism and half-metallicity, as expected, but lead to a dramatic enhancement of the low field magnetoresistance.
6 pages, pdflatex, EPL style
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Cited by in corpus (8)
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- Antisite disorder driven spontaneous exchange bias effect in La2-xSrxCoMnO6 (0<x<1)
- Interplay between Superconductivity and Magnetism in Rb0.8Fe1.6Se2 under Pressure
- Theory of metallic double perovskites with spin orbit coupling and strong correlations; application to ferrimagnetic Ba2FeReO6
- Large Magnetocaloric effect and magnetic phase transitions in NdNiMnO
- Robust Long Range Magnetic Correlation across Anti-phase Domain Boundaries in SrCrReO
- Effect of oxygen vacancy on structural, electronic and magnetic properties of La-based oxide interfaces
- The Magnon Spectrum in the Domain Ferromagnetic State of Antisite Disordered Double Perovskites