Magnetic anisotropy in Li-phosphates and origin of magnetoelectricity in LiNiPO4
arXiv:0908.3802 · doi:10.1103/PhysRevB.81.024110
Abstract
Li-based phosphates are paradigmatic materials for magnetoelectricity. By means of first-principles calculations, we elucidate the microscopic origin of spin anisotropy and of magnetoelectric effects in LiNiPO4. The comparison with LiCoPO4 reveals that Co-d7 and Ni-d8 electronic clouds show distinct orbital shapes, which in turn result in an opposite trend of the local spin anisotropy with respect to the surrounding O6 cages. Due to magnetic anisotropy, the Ni-based phosphate shows a peculiar "angled-cross" spin ground-state, which is responsible for magnetoelectricity. In this respect, we show that, under a magnetic field Hx, an electronic polarization Pz arises, with an estimated linear magneto-electric coefficient in good agreement with experiments.
4 pages, 4 figures. Submitted for publication
References in corpus (8)
- Spin current and magneto-electric effect in non-collinear magnets
- Role of the Dzyaloshinskii-Moriya interaction in multiferroic perovskites
- Dual nature of improper ferroelectricity in a magnetoelectric multiferroic
- Towards a microscopic theory of toroidal moments in bulk periodic crystals
- Spin-Orbit Coupling and Ion Displacements in Multiferroic TbMnO3
- First Principles Studies of Multiferroic Materials
- Origin of the Structural and Magnetic Anomaly of the Layered Compound SrFeO2: A Density Functional Investigation
- Field-induced magnetic phases and electric polarization in LiNiPO4
Cited by in corpus (7)
- The importance of the electronic contribution to linear magnetoelectricity
- Issues with J-dependence in the LSDA+U method for non-collinear magnets
- Magnetic structures and quadratic magnetoelectric effect in LiNiPO beyond 30T
- Comparative study of DFT+ functionals for non-collinear magnetism
- Magnetic order, hysteresis and phase coexistence in magnetoelectric LiCoPO
- Ab-initio prediction of magnetoelectricity in infinite-layer CaFeO2 and MgFeO2
- Linear magnetoelectricity in the Zintl phase pnictides (Ba, Ca, Sr) from first principles calculations