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Frustrated Magnetism in Vanadium Oxides

机译:钒氧化物中的令人沮丧的磁性

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The effect of frustration in various localized and itinerant vanadium oxide compounds is discussed within next nearest neighbors Heisenberg and spin fluctuation models, respectively. In the localized moment case the S = 1/2 J_1-J_2-model on a square lattice exhibits a rich phase diagram with magnetic as well as exotic hidden order phases due to the interplay of frustration and quantum fluctuations. Their signatures in the high field magnetization and in magnetocaloric quantities are surveyed. The possible quantum phase transitions are discussed and applied to layered vanadium oxides of the type AA'VO(PO_4)_2 where A, A' = Pb, Zn, Sr, Ba, Cd. In itinerant electron systems magnetic frustration may emerge as a result of electron correlations on a geometrically frustrated lattice. This mechanism causes enhanced spin fluctuations in a large region of momentum space and therefore can lead to a heavy fermion state at low temperatures as in the 3d spinel compound LiV_2O_4. The evidence from neutron scattering and NMR experiments is discussed within self-consistent renormalization theory based on local density approximation band structure calculations.
机译:在下一个最近的邻居Heisenberg和旋转波动模型中讨论了各种局部和潮钒氧化物化合物中的挫折的影响。在本地化力矩情况下,S = 1/2上的正方形晶格J_1-J_2模型显示出由于挫折和量子波动的相互作用与磁以及异国隐藏顺序相的富相图。调查了它们在高场磁化和磁热量中的签名。可能的量子相变进行了讨论和应用到该类型AA'VO(PO_4)_2,其中A,A” =铅,锌,锶,钡,镉的层状钒氧化物。在流逝电子系统中,由于在几何沮丧的晶格上的电子相关性,可以出现磁挫伤。该机制导致在动量空间的大区域中增强的旋转波动,因此可以在低温下导致重质的态度,如3D尖晶石化合物LIV_2O_4。基于局部密度近似频带结构计算的自我一致的重整化理论中讨论了来自中子散射和NMR实验的证据。

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