Spin-chain magnetism and uniform Dzyaloshinsky-Moriya anisotropy in BaVO
arXiv:1308.5305 · doi:10.1103/PhysRevB.89.014405
Abstract
We report on the microscopic magnetic model of a spin-1/2 magnet BaVO. In contrast to earlier phenomenological analysis, our density-functional band-structure calculations combined with quantum Monte-Carlo simulations establish a relatively simple and non-frustrated model of weakly coupled spin chains with the intrachain coupling of 38 K and the Neel temperature of 6 K, both in excellent agreement with the experiment. The intrachain coupling between the spin-1/2 V ions takes place via two contiguous VO tetrahedra forming an extended superexchange pathway with the V--V distance of 7.44 A. Surprisingly, this pathway is preferred over shorter V--V connections, owing to peculiarities in the interacting orbitals of the magnetic V ions and V ions that are non-magnetic, but feature low-lying states contributing to the superexchange process. We also note that the crystal structure of BaVO supports the long-sought uniform arrangement of Dzyaloshinsky-Moriya (DM) couplings on a spin-1/2 chain. While our calculations yield only a weak DM anisotropy in BaVO, the crystal structure of this compound provides a suitable framework for the search of spin chains with the uniform DM anisotropy in other compounds of the vanadate family.
8 pages, 7 figures, 1 table + Supplemental material [published version]
References in corpus (12)
- Fractionalized excitations in the spin liquid state of a kagomé lattice antiferromagnet
- The ALPS project release 1.3: open source software for strongly correlated systems
- beta-Cu2V2O7: a spin-1/2 honeycomb lattice system
- Extension of the spin-1/2 frustrated square lattice model: the case of layered vanadium phosphates
- Spin-orbital effects in magnetized quantum wires and spin chains
- Multiple Magnon Modes and Consequences for the Bose-Einstein Condensed Phase in BaCuSi2O6
- Peculiar long-range superexchange in Cu2A2O7 (A = P, As, V) as a key element of the microscopic magnetic model
- Electronic and magnetic properties of KCuPO - a model S=1/2 Heisenberg chain system
- Spin fluctuations with two-dimensional XY behavior in a frustrated S = 1/2 square-lattice ferromagnet
- Magnetic properties of Ag(2)VOP(2)O(7): an unexpected spin dimer system
- Ab initio modeling of Bose-Einstein condensation in Pb2V3O9
- BaV3O8: A possible Majumdar-Ghosh system with S=1/2
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