Wang Chong, Gioia L, Burkov A A
Perimeter Institute for Theoretical Physics, Waterloo, Ontario N2L 2Y5, Canada.
Department of Physics and Astronomy, University of Waterloo, Waterloo, Ontario N2L 3G1, Canada.
Phys Rev Lett. 2020 Mar 6;124(9):096603. doi: 10.1103/PhysRevLett.124.096603.
Weyl semimetal may be thought of as a gapless topological phase protected by the chiral anomaly, where the symmetries involved in the anomaly are the U(1) charge conservation and the crystal translational symmetry. The absence of a band gap in a weakly interacting Weyl semimetal is mandated by the electronic structure topology and is guaranteed as long as the symmetries and the anomaly are intact. The nontrivial topology also manifests in the Fermi arc surface states and topological response, in particular taking the form of an anomalous Hall effect in magnetic Weyl semimetals, whose magnitude is only determined by the location of the Weyl nodes in the Brillouin zone. Here we consider the situation when the interactions are not weak and ask whether it is possible to open a gap in a magnetic Weyl semimetal while preserving its nontrivial electronic structure topology along with the translational and the charge conservation symmetries. Surprisingly, the answer turns out to be yes. The resulting topologically ordered state provides a nontrivial realization of the fractional quantum Hall effect in three spatial dimensions in the absence of an external magnetic field, which cannot be viewed as a stack of two dimensional states. Our state contains loop excitations with nontrivial braiding statistics when linked with lattice dislocations.
外尔半金属可被视为一种由手征反常保护的无隙拓扑相,其中参与反常的对称性是U(1)电荷守恒和晶体平移对称性。弱相互作用外尔半金属中能带隙的缺失由电子结构拓扑决定,并且只要对称性和反常保持完整就会得到保证。非平凡拓扑还体现在费米弧表面态和拓扑响应中,特别是在磁性外尔半金属中表现为反常霍尔效应,其大小仅由布里渊区中外尔节点的位置决定。在这里,我们考虑相互作用不强的情况,并询问是否有可能在保持其非平凡电子结构拓扑以及平移和电荷守恒对称性的同时,在磁性外尔半金属中打开一个能隙。令人惊讶的是,答案是肯定的。由此产生的拓扑有序态在没有外部磁场的情况下,在三维空间中提供了分数量子霍尔效应的非平凡实现,这不能被视为二维态的堆叠。当与晶格位错相连时,我们的态包含具有非平凡编织统计的环激发。