论文标题

在磁性安提佩罗夫斯币欧盟中创建和控制狄拉克·费米子,魏尔费米斯和节点线

Creating and controlling Dirac fermions, Weyl fermions, and nodal lines in the magnetic antiperovskite Eu$_3$PbO

论文作者

Hirschmann, Moritz M., Gibbs, Alexandra S., Orlandi, Fabio, Khalyavin, Dmitry, Manuel, Pascal, Abdolazimi, Vahideh, Yaresko, Alexander, Nuss, Jürgen, Takagi, H., Schnyder, Andreas P., Rost, Andreas W.

论文摘要

从基本科学的角度以及潜在的旋转三位型和记忆应用方面,磁性半法的带拓扑都引起了人们的关注。不幸的是,到目前为止,只发现了少数具有磁性秩序的合适拓扑半学。一个拥有这些特征的家庭是Antiperovskites,一个$ _3 $ bo,是一个由3D Dirac Semimetals的家族。 a = eu $^{2+} $具有多个阶段的磁性序列,这是应用磁场的函数。在这里,通过将带结构的计算与中子衍射和磁性测量相结合,我们建立了Antiperovskite EU $ _3 $ PBO作为新的拓扑磁性半学。该拓扑材料表现出许多不同的拓扑阶段,具有有序的欧盟矩,可以通过外部磁场轻松控制。欧盟$ _3 $ PBO的拓扑相图包括抗铁磁狄拉克相,以及具有Weyl点和淋巴结线的铁磁相和铁磁相。对于这些阶段的每个阶段,我们通过$ \ textit {ab-initio} $和紧密结合计算来确定散装带分散,表面状态和拓扑不变。我们对这些拓扑阶段的发现引入了欧盟$ _3 $ PBO,作为研究和操纵乐队拓扑,磁性和运输的相互作用的新平台。

The band topology of magnetic semimetals is of interest both from the fundamental science point of view and with respect to potential spintronics and memory applications. Unfortunately, only a handful of suitable topological semimetals with magnetic order have been discovered so far. One such family that hosts these characteristics is the antiperovskites, A$_3$BO, a family of 3D Dirac semimetals. The A=Eu$^{2+}$ compounds magnetically order with multiple phases as a function of applied magnetic field. Here, by combining band structure calculations with neutron diffraction and magnetic measurements, we establish the antiperovskite Eu$_3$PbO as a new topological magnetic semimetal. This topological material exhibits a multitude of different topological phases with ordered Eu moments which can be easily controlled by an external magnetic field. The topological phase diagram of Eu$_3$PbO includes an antiferromagnetic Dirac phase, as well as ferro- and ferrimagnetic phases with both Weyl points and nodal lines. For each of these phases, we determine the bulk band dispersions, the surface states, and the topological invariants by means of $\textit{ab-initio}$ and tight-binding calculations. Our discovery of these topological phases introduces Eu$_3$PbO as a new platform to study and manipulate the interplay of band topology, magnetism, and transport.

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