Effects of Crystal Structure and the On-Site Coulomb Interactions on the Electronic and Magnetic Structure of Pyrochlores MoO (A= Y, Gd, and Nd)
arXiv:cond-mat/0211615 · doi:10.1103/PhysRevB.67.174406
Abstract
Being motivated by recent experimental studies, we investigate magnetic structures of the Mo pyrochlores MoO (= Y, Nd, and Gd) and their impact on the electronic properties. The latter are closely related with the behavior of twelve Mo() bands, located near the Fermi level and well separated from the rest of the spectrum. We use a mean-field Hartree-Fock approach, which combines fine details of the electronic structure for these bands, extracted from the conventional calculations in the local-density approximation, the spin-orbit interaction, and the on-site Coulomb interactions amongst the Mo(4d) electrons, treated in the most general rotationally invariant form. The Coulomb repulsion U plays a very important role in the problem, and the semi-empirical value U1.5-2.5 eV accounts simultaneously for the metal-insulator (M-I) transition, the ferromagnetic (FM) - spin-glass (SG) transition, and for the observed enhancement of the anomalous Hall effect (AHE). The M-I transition is mainly controlled by . The magnetic structure at the metallic side is nearly collinear FM, due to the double exchange mechanism. The transition into the insulating state is accompanied by the large canting of spin and orbital magnetic moments. The sign of exchange interactions in the insulating state is controlled by the Mo-Mo distances. Smaller distances favor the antiferromagnetic coupling, which preludes the SG behavior in the frustrated pyrochlore lattice. Large AHE is expected in the nearly collinear FM state, near the point of M-I transition, and is related with the unquenched orbital magnetization at the Mo sites. We also predict large magneto-optical effect in the same FM compounds.
26 pages, 17 figures (low resolution is used for Figs. 6, 8, and 9, please contact directly if you need the originals), 1 table
References in corpus (6)
- Topological Nature of Anomalous Hall Effect in Ferromagnet
- Orbital ferromagnetism and anomalous Hall effect in antiferromagnets on distorted fcc lattice
- Charge Transport in Manganites: Hopping Conduction, the Anomalous Hall Effect and Universal Scaling
- Electronic structure of the pyrochlore metals Cd2Os2O7 and Cd2Re2O7
- Frustration driven lattice distortion; an NMR investigation of Y2Mo2O7
- Optimized Effective Potential for Extended Hubbard Model
Cited by in corpus (33)
- Magnetic Pyrochlore Oxides
- First Principles Calculation of Anomalous Hall Conductivity in Ferromagnetic bcc Fe
- Combining DFT and Many-Body Methods to Understand Correlated Materials
- Mass enhancement, correlations, and strong coupling superconductivity in the beta-pyrochlore KOs2O6
- Liquid-like correlations in single crystalline Y2Mo2O7: an unconventional spin glass
- Lattice Distortion and Magnetic Ground State of YTiO and LaTiO
- First-principle Wannier functions and effective lattice fermion models for narrow-band compounds
- Anomalous Hall Effect in three ferromagnets: EuFe4Sb12, Yb14MnSb11, and Eu8Ga16Ge30
- Fermi sea term in the relativistic linear muffin-tin-orbital transport theory for random alloys
- Phase competition in the double-exchange model on the frustrated pyrochlore lattice
- A kinetic equation approach to the anomalous Hall effect in a diffusive Rashba two-dimensional electron system with magnetization
- Orientation Dependence of the Anomalous Hall Resistivity in Single Crystals of Yb14MnSb11
- Spin-orbital frustration in pyrochlores A2Mo2O7
- Anomalous Hall Effect due to Non-collinearily in Pyrochlore Compounds: Role of Orbital Aharonov-Bohm Effect
- Spin-orbital glass transition in a model of a frustrated pyrochlore magnet without quenched disorder
- Electronic phase separation in the pyrochlore double-exchange model
- Ordered spin-ice state in the geometrically frustrated metallic-ferromagnet Sm2Mo2O7
- Mott-Hubbard transition and spin-liquid state on the pyrochlore lattice
- Magneto-optics induced by the spin chirality in itinerant ferromagnet NdMoO
- First-principles studies of spin-orbital physics in pyrochlore oxides
- First-principles evaluation of intrinsic, side-jump, and skew-scattering parts of anomalous Hall conductivities in disordered alloys
- Ferromagnetic transition in the double-exchange model on the pyrochlore lattice
- Amorphous ferromagnetism and re-entrant magnetic glassiness in SmMoO: new insights into the electronic phase diagram of pyrochlore molybdates
- Orbital degeneracy and Mott transition in Mo pyrochlore oxides
- Supercooled Jahn-Teller Ice
- Single-crystal growth and magnetic properties of the metallic molybdate pyrochlore Sm2Mo2O7
- Spin-orbital liquids and insulator-metal transitions on the pyrochlore lattice
- Replica theory for disorder-free spin-lattice glass transition on a tree-like simplex network
- Metal-insulator transitions in pyrochlore oxides
- Robust noncoplanar magnetism in band filling-tuned (NdCa)MoO
- Mott transition and anomalous resistive state in the pyrochlore molybdates
- Spin in Uniform Gravity, Hidden Momentum, and the Anomalous Hall Effect
- Voltage induced control and magnetoresistance of noncollinear frustrated magnets