Magnetic phase diagram and first principles study of Pb3TeCo3V2O14
arXiv:1312.6392 · doi:10.1103/PhysRevB.89.104409
Abstract
An antiferromagnetic ordering in Pb3TeCo3V2O14 takes place through formation of short range correlation regime with T* ~ 10.5 K and succession of second order phase transition at TN1 = 8.9 K and first order phase transition at TN2 = 6.3 K. An external magnetic field rapidly destroys magnetic structure at T < TN2 and influences the magnetic order at TN2 < T < TN1 resulting in complex magnetic phase diagram of Pb3TeCo3V2O14 as derived from magnetization and specific heat measurements. The first principles calculations indicate that in variance with layered crystal structure the magnetic subsystem of Pb3TeCo3V2O14 is quasi-one-dimensional and highly unusual consisting of weakly coupled triangular tubes.
12 pages, 10 figures
References in corpus (7)
- Quantum ESPRESSO: a modular and open-source software project for quantum simulations of materials
- First-principles study of spontaneous polarization in multiferroic BiFeO
- Ab initio investigation of the exchange interactions in BiFeO: The Cairo pentagonal lattice compound
- Importance of In-Plane Anisotropy in the Quasi Two-Dimensional Antiferromagnet BaNiVO
- Magnetic moment suppression in Ba3CoRu2O9: hybridization effect
- Influence of Co spin-state on optical properties of LaCoO and HoCoO
- Heat Capacity and Magnetic Phase Diagram of the Low-Dimensional Antiferromagnet YBaCuO
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