Revisiting the antiferromagnetic structure of Tb14Ag51: the importance of distinguishing alternative symmetries for a multidimensional order parameter.

V. Pomjakushin, J. Perez-Mato, P. Fischer, L. Keller, W. Sikora
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引用次数: 1

Abstract

The antiferromagnetic structure of Tb14Ag51 with the propagation vector [1/3, 1/3, 0] and the parent space group P6/m is revisited using both magnetic symmetry and irreducible representation arguments. A new magnetic structure under the hexagonal Shubnikov magnetic space group P6' which fits much better the experimental data is found. This new solution was obtained by constraining the spin arrangement to one of the three possible magnetic space groups of maximal symmetry that can be realized by a magnetic ordering transforming according to the four-dimensional physically irreducible representation that is known to be relevant in this magnetic phase. The refined model, parameterized under P6', implicitly includes the presence of a third harmonic with the propagation vector at the gamma point [0, 0, 0], which has an important weight in the final result. The structure consists of 13 symmetry-independent Tb magnetic moments with the same size of 8.48 (2) μB, propagating cycloidally in the ab plane. The modulation has a substantial deviation from being purely sinusoidal due to the contribution of the mentioned third harmonic.
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重访Tb14Ag51的反铁磁结构:对多维序参数区分可选对称性的重要性。
利用磁对称和不可约表示理论重新研究了传播向量为[1/ 3,1 / 3,0]和母空间群为P6/m的Tb14Ag51的反铁磁结构。在六方舒布尼科夫磁空间群P6′下,发现了一种更符合实验数据的新磁结构。这个新解是通过将自旋排列限制在最大对称的三个可能的磁空间群中的一个来获得的,这些磁空间群可以根据已知的与该磁相相关的四维物理不可约表示进行磁序变换来实现。在P6′下参数化的改进模型隐含地包含了传播矢量在γ点[0,0,0]处的三次谐波的存在,这在最终结果中具有重要的权重。该结构由13个大小为8.48 (2)μB的与对称无关的Tb磁矩组成,在ab平面上以摆线方式传播。由于上述三次谐波的贡献,调制具有从纯粹正弦的实质性偏差。
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