论文标题
由MN-PT-IN-PT-IN逆四角形啤酒器合金驱动的强大拓扑厅效应
Robust topological Hall effect driven by tunable noncoplanar magnetic state in Mn-Pt-In inverse tetragonal Heusler alloys
论文作者
论文摘要
通过有效控制竞争磁相互作用来操纵磁接地态已导致发现许多外来磁性状态。在这个方向上,由多种磁性旋转型和有利于手性dzyaloshinskii-moriya互动(DMI)的晶体对称性组成的四方小啤酒化合物为实现非平凡的磁性结构提供了理想的基础。在这里,我们介绍了多种强大的拓扑厅效应(The)的观察,该效果(the)是多宣传的Mn $ _ {2-X} $ ptin Heusler磁铁。拓扑厅的电阻率源于在存在非零标量旋转手性的情况下非变化的真实空间浆果曲率,随着降低不同sublattices磁矩的倾斜角度的幅度,系统地降低了。借助第一个原理计算,磁性和中子衍射测量值,我们确定存在由D $ _ {2d} $对称结构的竞争性的Heisenberg交换和手性DMI引起的可调的非旋转磁性结构。相对于非共线性程度的鲁棒性增加了设计基于自旋设备的新自由度。
Manipulation of magnetic ground states by effective control of competing magnetic interactions has led to the finding of many exotic magnetic states. In this direction, the tetragonal Heusler compounds consisting of multiple magnetic sublattices and crystal symmetry favoring chiral Dzyaloshinskii-Moriya interaction (DMI) provide an ideal base to realize non-trivial magnetic structures. Here, we present the observation of a large robust topological Hall effect (THE) in the multi-sublattice Mn$_{2-x}$PtIn Heusler magnets. The topological Hall resistivity, which originates from the non-vanishing real space Berry curvature in the presence of non-zero scalar spin chirality, systematically decreases with decreasing the magnitude of the canting angle of the magnetic moments at different sublattices. With help of first principle calculations, magnetic and neutron diffraction measurements, we establish that the presence of a tunable non-coplanar magnetic structure arising from the competing Heisenberg exchanges and chiral DMI from the D$_{2d}$ symmetry structure is responsible for the observed THE. The robustness of the THE with respect to the degree of non-collinearity adds up a new degree of freedom for designing THE based spintronic devices.