Superexchange Interactions in Orthorhombically Distorted Titanates RTiO3 (R= Y, Gd, Sm, and La)
arXiv:0906.2035 · doi:10.1088/1367-2630/11/9/093003
Abstract
Starting from the multiorbital Hubbard model for the t2g-bands of RTiO3 (R= Y, Gd, Sm, and La), where all parameters have been derived from the first-principles calculations, we construct an effective superexchange (SE) spin model, by treating transfer integrals as a perturbation. We consider four approximations for the SE interactions: (i) the canonical crystal-field (CF) theory, where the form of the the occupied t2g-orbitals is dictated by the CF splitting, and three extensions, namely (ii) the relativistic one, where occupied orbitals are confined within the lowest Kramers doublet obtained from the diagonalization of the crystal field and relativistic spin-orbit (SO) interactions; (iii) the finite-temperature extension, which consider the effect of thermal orbital fluctuations near the CF configuration; (iv) the many-electron extension, which is based on the diagonalization of the full Hamiltonian constructed in the basis of two-electron states separately for each bond of the system. The main results are summarized as follows. (i) Thermal fluctuations of the orbital degrees of freedom can substantially reduce the value of the magnetic transition temperature. (ii) The anisotropic and antisymmetric Dzyaloshinsky-Moriya interactions are rigorously derived and their implications to the magnetic properties are discussed. (iii) The CF theory, although applicable for YTiO3 and high-temperature structures of GdTiO3 and SmTiO3, breaks down in LaTiO3. Instead, the combination of the many-electron effects and SO interaction can be responsible for the AFM character of interatomic correlations in LaTiO3. (iv) The SE interactions in YTiO3 strongly depend on the details of the crystal structure. Distortions in the low-temperature structure tend to weaken the ferromagnetic interactions.
23 pages, 9 tables, 4 figures
References in corpus (8)
- Orbital Physics in the Perovskite Ti Oxides
- Magnetoelastic coupling in RETiO3 (RE = La, Nd, Sm, Gd, Y)
- Combining DFT and Many-Body Methods to Understand Correlated Materials
- Lattice Distortion and Magnetism of 3d- Perovskite Oxides
- Lattice Distortion and Magnetic Ground State of YTiO and LaTiO
- Orbital Polarization in Itinerant Magnets
- Fingerprints of Spin-Orbital Physics in Crystalline O
- Ferromagnetism and Lattice Distortions in the Perovskite YTiO
Cited by in corpus (11)
- Validity and limitations of the superexchange model for the magnetic properties of Sr2IrO4 and Ba2IrO4 mediated by the strong spin-orbit coupling
- Magnetism of sodium superoxide
- Microscopic theory of electric polarization induced by skyrmionic order in GaVS
- Self-consistent linear response for the spin-orbit interaction related properties
- Magnetic structure of noncentrosymmetric perovskites PbVO3 and BiCoO3
- A DMI guide to magnets micro-world
- Skyrmionic order and magnetically induced polarization change in lacunar spinel compounds GaVS and GaMoS: comparative theoretical study
- Modeling of complex oxide materials from the first principles: systematic applications to vanadates RVO3 with distorted perovskite structure
- Structure, strain, and control of ground state property in LaTiO/LaAlO superlattice
- Band filling dependence of the Curie temperature in CrO2
- Dynamics of photo-induced ferromagnetism in oxides with orbital degeneracy