论文标题
分层候选者Weyl材料Eumnsb $ _2 $
Canted Antiferromagnetic phases in the layered candidate Weyl material EuMnSb$_2$
论文作者
论文摘要
eumnsb $ _2 $是一种候选拓扑材料,可以针对Weyl Semimetal进行调整,但是其抗磁性(AFM)阶段的报道有所不同。由纯SB层主导的谱带的耦合,将拓扑费用为MN和EU磁态提供了一个潜在的调整拓扑特性的途径。我们根据单晶中子衍射,磁化和热容量数据以及多晶$^{151} $euMössbauer数据,对三个AFM阶段的磁结构进行了详细分析。 Mn磁性sublatice订单订购在$ 323(1)$ 〜k以下的C型AFM结构中,并带有有序的Mn磁矩$μ_ {\ text {Mn}} $垂直于层。欧盟Sublattice的AFM订购量低于$ 23(1)$ 〜K,订购的欧盟磁矩$μ_ {\ text {eu}} $偏离了正常层和$μ_ {\ text {mn}} $,以保持其更高的命令。 $μ_ {\ text {eu}} $是在每个欧盟层中对齐的,但表现出复杂的AFM层堆叠。这两个高温阶段均由磁性空间组(MSG)$ pn^{\ prime} m^{\ prime} a^{\ prime} $,具有相同的尺寸。冷却低于$ = 9(1)$ 〜k揭示了第三个AFM相位,其中$μ_ {\ text {mn}} $保持不变,但是$μ_ {\ text {eu}} $开发了额外的平面内倾斜。此阶段具有msg $ p11 \ frac {2_1} {a^{\ prime}} $。我们还找到了与欧盟相关的短范围磁相关的证据,$ 12〜 \ text {k} \ sillsim t \ sillsim 30〜 \ text {k} $。使用确定的磁性结构,我们假设最近的邻里内层和层间交换常数以及一般海森贝格模型中的磁各向异性的迹象。然后,我们讨论eumnsb $ _2 $及其拓扑特性中各个AFM州的含义。
EuMnSb$_2$ is a candidate topological material which can be tuned towards a Weyl semimetal, but there are differing reports for its antiferromagnetic (AFM) phases. The coupling of bands dominated by pure Sb layers hosting topological fermions to Mn and Eu magnetic states provides a potential path to tune the topological properties. We present a detailed analysis of the magnetic structure on three AFM phases based on single-crystal neutron diffraction, magnetization, and heat capacity data as well as polycrystalline $^{151}$Eu Mössbauer data. The Mn magnetic sublattice orders into a C-type AFM structure below $323(1)$~K with the ordered Mn magnetic moment $μ_{\text{Mn}}$ lying perpendicular to the layers. AFM ordering of the Eu sublattice occurs below $23(1)$~K with the ordered Eu magnetic moment $μ_{\text{Eu}}$ canted away from the layer normal and $μ_{\text{Mn}}$ retaining its higher-temperature order. $μ_{\text{Eu}}$ is ferromagnetically aligned within each Eu layer but exhibits a complicated AFM layer stacking. Both of these higher-temperature phases are described by magnetic space group (MSG) $Pn^{\prime}m^{\prime}a^{\prime}$ with the chemical and magnetic unit cells having the same dimensions. Cooling below $=9(1)$~K reveals a third AFM phase where $μ_{\text{Mn}}$ remains unchanged but $μ_{\text{Eu}}$ develops an additional in-plane canting. This phase has MSG $P11\frac{2_1}{a^{\prime}}$. We additionally find evidence of short-range magnetic correlations associated with the Eu between $12~\text{K} \lesssim T \lesssim 30~\text{K}$. Using the determined magnetic structures, we postulate the signs of nearest-neighbor intralayer and interlayer exchange constants and the magnetic anisotropy within a general Heisenberg-model. We then discuss implications of the various AFM states in EuMnSb$_2$ and its topological properties.