论文标题

三角晶格磁铁Li2mnteo6中的隐藏磁顺序

Hidden Magnetic Order in Triangular-Lattice Magnet Li2MnTeO6

论文作者

Zvereva, E. A., Raganyan, G. V., Vasilchikova, T. M., Nalbandyan, V. B., Gafurov, D. A., Vavilova, E. L., Zakharov, K. V., Koo, H. -J., Pomjakushin, V. Yu., Susloparova, A. E., Kurbakov, A. I., Vasiliev, A. N., Whangbo, M. -H.

论文摘要

锰介留Li2MnTeo6由由Mn4+(D3,S = 3/2)离子组成的三角形旋转晶格。该化合物的磁性特性的特征是几种实验技术,包括磁化率,比热,介电介电常数,电子自旋共振(ESR),核磁共振(NMR)和中子粉末衍射(NPD)测量以及密度函数(DFT)。磁化率CHI(T)表现出非常异常的行为。它由居里 - 韦斯定律在高温下以curie-weiss温度为theta = -74 k的属性,没有明显的异常表明在低磁场处的远距离磁有序。 At high magnetic fields, however, the character of chi(T) changes showing a maximum at about 9 K. That this maximum of chi(T) reflects the onset of an antiferromagnetic order was confirmed by specific heat measurements, which exhibit a clear lambda-type anomaly at TN around 8.5 K even at zero magnetic field, and by 7Li NMR and dielectric permittivity measurements.由1.6 K处的中子粉末衍射测量确定的Li2MnTeo6的磁结构由120度的非连续性自旋结构描述,其传播矢量K =(1/3、1/3、0)。与这一发现一致的是,通过密度功能计算对LI2MNTEO6评估的自旋交换相互作用主要由每个三角形自旋晶格中最近的邻居抗磁性交换所主导。该旋转晶格在8左右的F = | theta |/tn上强烈旋转,并在TN上方的宽温度范围内表现出二维磁性。

The manganese tellurate Li2MnTeO6 consists of trigonal spin lattices made up of Mn4+ (d3, S = 3/2) ions. The magnetic properties of this compound were characterized by several experimental techniques, which include magnetic susceptibility, specific heat, dielectric permittivity, electron spin resonance (ESR), nuclear magnetic resonance (NMR) and neutron powder diffraction (NPD) measurements, and by density functional calculations (DFT). The magnetic susceptibility chi(T) demonstrates very unusual behavior. It isdescribed by the Curie-Weiss law at high temperature with Curie-Weiss temperature of Theta = -74 K, exhibits no obvious anomaly indicative of a long-range magnetic ordering at low magnetic fields. At high magnetic fields, however, the character of chi(T) changes showing a maximum at about 9 K. That this maximum of chi(T) reflects the onset of an antiferromagnetic order was confirmed by specific heat measurements, which exhibit a clear lambda-type anomaly at TN around 8.5 K even at zero magnetic field, and by 7Li NMR and dielectric permittivity measurements. The magnetic structure of Li2MnTeO6, determined by neutron powder diffraction measurements at 1.6 K, is described by the 120-degree non-collinear spin structure with the propagation vector k = (1/3, 1/3, 0). Consistent with this finding, the spin exchange interactions evaluated for Li2MnTeO6 by density functional calculations are dominated by the nearest-neighbor antiferromagnetic exchange within each triangular spin lattice. This spin lattice is strongly spin frustrated with f = |Theta|/TN around 8 and exhibits a two-dimensional magnetic character in a broad temperature range above TN.

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