Tan Tixuan, May-Mann Julian, Devakul Trithep
Stanford University, Department of Physics, Stanford, California 94305, USA.
Phys Rev Lett. 2025 Jul 18;135(3):036604. doi: 10.1103/dd2d-kk3w.
We propose fractional anomalous Hall crystals (FAHCs) as possible ground states of strongly interacting electrons in parent bands with Berry curvature. FAHCs are exotic states of matter that spontaneously break continuous translation symmetry to form a fractional Chern insulator. We construct a unified family of variational wave functions that describe FAHCs and their competing states in the presence of uniform parent Berry curvature. We calculate their variational energy with Coulomb interactions semianalytically in the thermodynamic limit. Our analysis reveals that FAHCs can be energetically favorable over both Wigner crystals and integer anomalous Hall crystals for sufficiently strong interactions or flat dispersion.
我们提出分数反常霍尔晶体(FAHCs)作为具有贝里曲率的母带中强相互作用电子的可能基态。FAHCs是一种奇异的物质状态,它自发地打破连续平移对称性,形成分数陈绝缘体。我们构建了一个统一的变分波函数族,用于描述在均匀母带贝里曲率存在下的FAHCs及其竞争态。我们在热力学极限下通过半解析方法计算了它们在库仑相互作用下的变分能量。我们的分析表明,对于足够强的相互作用或平坦色散,FAHCs在能量上可能优于维格纳晶体和整数反常霍尔晶体。