Field-induced magnetic phases and electric polarization in LiNiPO4
arXiv:0901.2238 · doi:10.1103/PhysRevB.79.092412
Abstract
Neutron diffraction is used to probe the (H,T) phase diagram of magneto-electric (ME) LiNiPO4 for magnetic fields along the c-axis. At zero field the Ni spins order in two antiferromagnetic phases. One has commensurate (C) structures and general ordering vectors (0,0,0), the other one is incommensurate (IC) with ordering vector (0,q,0). At low temperatures the C order collapses above 12 Tesla and adopts an IC structure with modulation vector parallel to (0,q,0). We show that C order is required for the ME effect and establish how electric polarization results from a field-induced reduction of the total magneto-elastic energy.
5 pages, 4 figures, accepted for publication in Phys. Rev. B
References in corpus (6)
- Role of the Dzyaloshinskii-Moriya interaction in multiferroic perovskites
- Multiferroics: different ways to combine magnetism and ferroelectricity
- Magnetically driven ferroelectric order in NiVO
- Direct transition from a disordered to a multiferroic phase on a triangular lattice
- Erratum: Landau Analysis of the Symmetry of the Magnetic Structure and Magnetoelectric Interaction in Multiferroics [Phys. Rev. B 76, 05447 (2007)]
- Phase diagram and spin Hamiltonian of weakly-coupled anisotropic S=1/2 chains in CuCl2*2((CD3)2SO)
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