论文标题
通过单晶中子衍射确定的磁电co4ta2O9的弯曲蜂窝晶格中的非colinerAre抗磁磁序
Noncollinear antiferromagnetic order in the buckled honeycomb lattice of magnetoelectric Co4Ta2O9 determined by single-crystal neutron diffraction
论文作者
论文摘要
CO4TA2O9基于弯曲的蜂窝基序表现出三维磁性晶格。它显示出异常的磁电效应,包括符号变化和非线性。如果没有磁性结构的详细知识,就无法理解这些效果。在此,我们报告了CO4TA2O9单晶的中子衍射和方向依赖性磁化率测量。在20.3 K以下,我们在沿C轴堆叠的二氧化碳层和扁平的蜂窝层中发现了远距离的抗铁磁序。在实验精确度中,磁矩位于AB平面。它们形成一个倾斜的抗铁磁结构,在弯曲的层中,倾斜角约为15 k,而每个平坦层中的磁矩是共线的。有限的(0、0、3)磁性Bragg峰强度直接证明了这一点,在线磁性阶段将不存在。磁性空间组为C2'/c。它与先前报道的C2/C'组不同,该组也在同生CO4NB2O9中发现。修订后的磁性结构成功地解释了CO4TA2O9在旋转模型框架内的磁电张量的主要特征。
Co4Ta2O9 exhibits a three-dimensional magnetic lattice based on the buckled honeycomb motif. It shows unusual magnetoelectric effects, including the sign change and non-linearity. These effects cannot be understood without the detailed knowledge of the magnetic structure. Herein, we report neutron diffraction and direction-dependent magnetic susceptibility measurements on Co4Ta2O9 single crystals. Below 20.3 K, we find a long-range antiferromagnetic order in the alternating buckled and flat honeycomb layers of Co2+ ions stacked along the c axis. Within experimental accuracy, the magnetic moments lie in the ab plane. They form a canted antiferromagnetic structure with a tilt angle of ~ 14 degrees at 15 K in the buckled layers, while the magnetic moments in each flat layer are collinear. This is directly evidenced by a finite (0, 0, 3) magnetic Bragg peak intensity, which would be absent in the collinear magnetic order. The magnetic space group is C2'/c. It is different from the previously reported C2/c' group, also found in the isostructural Co4Nb2O9. The revised magnetic structure successfully explains the major features of the magnetoelectric tensor of Co4Ta2O9 within the framework of the spin-flop model.