Doping induced site-selective Mott insulating phase in LaFeO
arXiv:1810.10978
Abstract
Tailoring transport properties of strongly correlated electron systems in a controlled fashion counts among the dreams of materials scientists. In copper oxides, varying the carrier concentration is a tool to obtain high-temperature superconducting phases. In manganites, doping results in exotic physics such as insulator-metal transitions (IMT), colossal magnetoresistance (CMR), orbital- or charge-ordered (CO) or charge-disproportionate (CD) states. In most oxides, antiferromagnetic order and charge-disproportionation are asssociated with insulating behavior. Here we report the realization of a unique physical state that can be induced by Mo doping in LaFeO: the resulting metallic state is a site-selective Mott insulator where itinerant electrons evolving in low-energy Mo states coexist with localized carriers on the Fe sites. In addition, a local breathing-type lattice distortion induces charge disproportionation on the latter, without destroying the antiferromagnetic order. A state, combining antiferromangetism, metallicity and CD phenomena is rather rare in oxides and may be of utmost significance for future antiferromagnetic memory devices.
8 pages, 4 figures
References in corpus (13)
- Antiferromagnetic spintronics
- Electrical switching of an antiferromagnet
- Frequency-dependent local interactions and low-energy effective models from electronic structure calculations
- Electrically controlled long-distance spin transport through an antiferromagnetic insulator
- Hubbard U and Hund's Exchange J in Transition Metal Oxides: Screening vs. Localization Trends from Constrained Random Phase Approximation
- Antiferromagnetic correlations in the metallic strongly correlated transition metal oxide LaNiO
- Magnetism, Charge Order and Giant Magnetoresistance in SrFeO Single Crystals
- CaCrO3: an anomalous antiferromagnetic metallic oxide
- Theoretical and experimental evidence of a site-selective Mott transition in Fe2O3 under pressure
- Effect of spin orbit coupling and Hubbard on the electronic structure of IrO
- Stabilization of charge ordering in La_(1/3)Sr_(2/3)FeO_(3-d) by magnetic exchange
- Preparation, structural, dielectric and magnetic properties of LaFeO3-PbTiO3 solid solutions
- Electronic structure of an antiferromagnetic metal: CaCrO3