论文标题
MNBI2TE4中的奇数层效应和层依赖性磁相图
Odd-even layer-number effect and layer-dependent magnetic phase diagrams in MnBi2Te4
论文作者
论文摘要
具有非平凡拓扑特性和磁性的固有磁性层状绝缘子MNBI2TE4已成为探索外来量子现象(例如量子异常霍尔效应)的有前途的系统。然而,MNBI2TE4的层依赖性磁性是基本的,对于进一步探索该系统中量子现象的基础是至关重要的。在这里,我们使用极性反射磁圆二色性光谱,并结合理论计算,以深入了解MNBI2TE4中的层依赖性磁性。 MNBI2TE4的磁性行为表现出明显的奇数层数效应,即磁滞循环的强制性振荡(在μ0HC时)和自旋拖动过渡(在μ0H1时),围绕Zeeman Energy和磁性Anisotroproproy Energy。在偶数隔板层中,观察到异常的磁性磁滞回路,这归因于与厚度无关的表面相关磁化。通过线性链模型,我们可以阐明自旋杆场的奇数效应,并确定外部磁场下磁状态的演化。平均场方法还允许我们将实验观察到的磁相图跟踪到磁场,层数,尤其是温度。总体而言,通过利用异常的层依赖性磁性,我们的工作为进一步研究MNBI2TE4的量子特性铺平了道路。
The intrinsic magnetic layered topological insulator MnBi2Te4 with nontrivial topological properties and magnetic order has become a promising system for exploring exotic quantum phenomena such as quantum anomalous Hall effect. However, the layer-dependent magnetism of MnBi2Te4, which is fundamental and crucial for further exploration of quantum phenomena in this system, remains elusive. Here, we use polar reflective magnetic circular dichroism spectroscopy, combined with theoretical calculations, to obtain an in-depth understanding of the layer-dependent magnetic properties in MnBi2Te4. The magnetic behavior of MnBi2Te4 exhibits evident odd-even layer-number effect, i.e. the oscillations of the coercivity of the hysteresis loop (at μ0Hc) and the spin-flop transition (at μ0H1), concerning the Zeeman energy and magnetic anisotropy energy. In the even-number septuple layers, an anomalous magnetic hysteresis loop is observed, which is attributed to the thickness-independent surface-related magnetization. Through the linear-chain model, we can clarify the odd-even effect of the spin-flop field and determine the evolution of magnetic states under the external magnetic field. The mean-field method also allows us to trace the experimentally observed magnetic phase diagrams to the magnetic fields, layer numbers and especially, temperature. Overall, by harnessing the unusual layer-dependent magnetic properties, our work paves the way for further study of quantum properties of MnBi2Te4.