Lee Yea-Lee, Park Hee Chul, Ihm Jisoon, Son Young-Woo
Department of Physics and Astronomy, Seoul National University, Seoul 08826, Korea;
Korea Institute for Advanced Study, Seoul 02455, Korea.
Proc Natl Acad Sci U S A. 2015 Sep 15;112(37):11514-8. doi: 10.1073/pnas.1515664112. Epub 2015 Aug 31.
Because topological surface states of a single-crystal topological insulator can exist on all surfaces with different crystal orientations enclosing the crystal, mutual interactions among those states contiguous to each other through edges can lead to unique phenomena inconceivable in normal insulators. Here we show, based on a first-principles approach, that the difference in the work function between adjacent surfaces with different crystal-face orientations generates a built-in electric field around facet edges of a prototypical topological insulator such as Bi2Se3. Owing to the topological magnetoelectric coupling for a given broken time-reversal symmetry in the crystal, the electric field, in turn, forces effective magnetic dipoles to accumulate along the edges, realizing the facet-edge magnetic ordering. We demonstrate that the predicted magnetic ordering is in fact a manifestation of the axion electrodynamics in real solids.
由于单晶拓扑绝缘体的拓扑表面态可以存在于围绕晶体的所有具有不同晶体取向的表面上,通过边缘彼此相邻的那些态之间的相互作用会导致在普通绝缘体中无法想象的独特现象。在此,我们基于第一性原理方法表明,具有不同晶面取向的相邻表面之间的功函数差异会在典型拓扑绝缘体(如Bi2Se3)的晶面边缘周围产生一个内建电场。由于晶体中给定的时间反演对称性破缺导致的拓扑磁电耦合,该电场进而迫使有效磁偶极子沿边缘积累,实现晶面边缘磁有序。我们证明所预测的磁有序实际上是实固体中轴子电动力学的一种表现。