论文标题
二阶拓扑磁光学效应在非稳态性抗铁磁铁中
Second-order topological magneto-optical effects in noncoplanar antiferromagnets
论文作者
论文摘要
由Voigt和Schäfer-Hubert效应代表的二阶磁光效应是检测抗铁磁体中自旋纹理的有效方法,而先前的研究通常仅限于孔线性抗fiferromagnets。在非共线性抗铁磁铁中,已经揭示出以旋转手性为特征的自旋纹理在许多令人兴奋的物理学中起着至关重要的作用。特别是,最近发现了源自标量旋转手性的一阶拓扑磁光效应。 In this work, using the first-principles calculations and group theory analysis, we generalize the first-order topological magneto-optical effects to the second-order cases, that is, topological Voigt and Schäfer-Hubert effects, by taking the noncoplanar 3Q spin state of $γ$-Fe$_{x}$Mn$_{1-x}$ alloy as an example.在$γ$ -fe $ _ {x} $ mn $ _ {1-x} $合金的colulinear 1q和2q旋转状态中,对传统的Voigt和Schäfer-Hubert效果进行了相对研究。此外,在紧张的1q,2q和3Q状态中讨论了由于晶体各向异性引起的天然线性双折射,并确定了实验区分二阶拓扑磁光效应和自然线性双折射的独特指纹。我们的工作带来了对非稳定抗铁磁铁的二阶磁光效应的拓扑见解,还提供了$γ$ -fe $ _ {x} $ mn $ _ {1-x} $,作为一个有吸引力的材料平台,用于未来实验探索。
The second-order magneto-optical effects, represented by Voigt and Schäfer-Hubert effects, are effective methods to detect the spin textures in antiferromagnets, whereas the previous studies are usually limited to collinear antiferromagnets. In noncollinear antiferromagnets, the spin textures characterized by spin chirality have been revealed to play a critical role in many exciting physics. In particular, the first-order topological magneto-optical effects originated from scalar spin chirality have been discovered recently. In this work, using the first-principles calculations and group theory analysis, we generalize the first-order topological magneto-optical effects to the second-order cases, that is, topological Voigt and Schäfer-Hubert effects, by taking the noncoplanar 3Q spin state of $γ$-Fe$_{x}$Mn$_{1-x}$ alloy as an example. The conventional Voigt and Schäfer-Hubert effects are comparatively studied in the collinear 1Q and 2Q spin states of $γ$-Fe$_{x}$Mn$_{1-x}$ alloy. In addition, the natural linear birefringence due to crystal anisotropy is discussed in the strained 1Q, 2Q, and 3Q states, and a unique fingerprint for experimentally distinguishing the second-order topological magneto-optical effects and natural linear birefringence is identified. Our work brings a topological insight into the second-order magneto-optical effects in noncoplanar antiferromagnets and also provides $γ$-Fe$_{x}$Mn$_{1-x}$ as an attractive material platform for future experimental exploration.