Spin and orbital ordering in double-layered manganites
arXiv:cond-mat/9904427 · doi:10.1103/PhysRevB.61.1825
Abstract
We study theoretically the phase diagram of the double-layered perovskite manganites taking into account the orbital degeneracy, the strong Coulombic repulsion, and the coupling with the lattice deformation. Observed spin structural changes as the increased doping are explained in terms of the orbital ordering and the bond-length dependence of the hopping integral along -axis. Temperature dependence of the neutron diffraction peak corresponding to the canting structure is also explained. Comparison with the 3D cubic system is made.
7 figures
References in corpus (2)
Cited by in corpus (11)
- Interplay of spin and orbital ordering in the layered colossal magnetoresistance manganite La2-2xSr1+2xMn2O7 (0.5<=x<=1.0)
- Spectacular doping dependence of interlayer exchange and other results on spin waves in bilayer manganites
- Orbital liquid in ferromagnetic manganites: The orbital Hubbard model for electrons
- Magnetic Phases of Electron-Doped Manganites
- Orbital Structure and Magnetic Ordering in Layered Manganites: Universal Correlation and Its Mechanism
- Doping dependence of spin and orbital correlations in layered manganites
- Jahn-Teller effect and Electron correlation in manganites
- Magnetic and orbital order in overdoped bilayer manganites
- Anomalous pressure effect on the remanent lattice striction of a (La,Pr)SrMnO bilayered manganite single crystal
- Magnetization Distribution in the layered CMR Manganite La1.2Sr1.8Mn2O7 from Polarized Neutron Diffraction
- Charge order and phase segregation in overdoped bilayer manganites