Institute for Theoretical Solid State Physics, IFW Dresden, 01171 Dresden, Germany.
Princeton Center for Theoretical Science, Princeton University, Princeton, New Jersey 08544, USA.
Phys Rev Lett. 2014 Mar 28;112(12):126806. doi: 10.1103/PhysRevLett.112.126806. Epub 2014 Mar 27.
We study two models for spinless fermions featuring topologically nontrivial bands characterized by Chern numbers C=±1 at fractional filling. Using exact diagonalization, we show that, even for infinitely strong nearest-neighbor repulsion, the ground states of these models belong to the recently discovered class of quantum liquids called fractional Chern insulators (FCI). Thus, we establish that FCI states can arise even if interaction strengths are arbitrarily larger than the noninteracting band gap, going beyond the limits in which FCI states have been previously studied. The strong-coupling FCI states, therefore, depart from the usual isolated-band picture that parallels the fractional quantum Hall effect in Landau levels and demonstrate how a topologically ordered state can arise in a truly multiband system.
我们研究了两种具有拓扑非平凡能带的无自旋费米子模型,其特征是在分数填充时 Chern 数 C=±1。通过精确对角化,我们表明,即使在无穷强的最近邻排斥作用下,这些模型的基态仍属于最近发现的一类量子液体,称为分数 Chern 绝缘体(FCI)。因此,我们证明了即使相互作用强度任意大于非相互作用能带隙,FCI 态也可以出现,这超出了之前研究 FCI 态的限制。因此,强耦合 FCI 态偏离了通常的孤立能带图像,与 Landau 能级中的分数量子霍尔效应平行,并展示了拓扑有序态如何在真正的多带系统中出现。