论文标题
自旋轨道耦合蜂窝磁铁中的自发性手性旋转顺序
Spontaneous Chiral-Spin Ordering in Spin-Orbit Coupled Honeycomb Magnets
论文作者
论文摘要
具有高度退化基态的沮丧的磁铁是狩猎异国情调状态的核心。最近对自旋轨道耦合蜂窝磁体的研究引起了人们对键依赖性相互作用的巨大兴趣,并欣赏了对称的非对抗$γ$相互作用,该$γ$相互作用在经典限制下表现出宏观的退化。在这里,我们研究了一个通用的自旋模型,并发现了一种新型的手性旋转顺序,并在主要的$γ$区域附近自发损坏的时间反转对称性。手性旋转相被证明在不同的转子中具有交错的手性关系,并且表现出无间隙的激发,如消失的能量隙和圆柱上有限的中心电荷所揭示的那样。尽管在第二个布里渊区的角落有一个很小的峰值,但随着系统尺寸的增加,磁性顺序可能会消失。最后,我们还尝试通过计算动态结构因子和模块化$ \ Mathcal {s} $矩阵来深入了解手性旋转阶段的拓扑特征。
Frustrated magnets with highly degenerate ground states are at the heart of hunting exotic states of matter. Recent studies in spin-orbit coupled honeycomb magnets have generated immense interest in bond-dependent interactions, appreciating a symmetric off-diagonal $Γ$ interaction which exhibits a macroscopic degeneracy in the classical limit. Here, we study a generic spin model and discover a novel chiral-spin ordering with spontaneously broken time-reversal symmetry near the dominant $Γ$ region. The chiral-spin phase is demonstrated to possess a staggered chirality relation in different sublattices, and it exhibits gapless excitations as revealed by the vanishing energy gap and the finite central charge on cylinders. Although there is a vestige of a tiny peak in the corner of the second Brillouin zone, the magnetic order is likely to vanish as the system size increases. Finally, we also attempt to gain insight into the possible topological signature of the chiral-spin phase by calculating the dynamic structure factor and the modular $\mathcal{S}$ matrix.