论文标题
kagome电子系统的量子阶段,有半填充的平坦波段
Quantum Phases of Kagome Electron System with Half-Filled Flat Bands
论文作者
论文摘要
我们研究具有最低平坦带的kagome晶格上的跨量相图。为了了解磁性,平坦的乐队挫败感和排斥性互动之间的竞争,我们采用了扩展的$ t $ - $ J $型号,其中考虑了跳高的能源$ t $,抗Fireromagnetic Heisenberg互动$ J $和短距离邻近的相邻Hubbard互动$ V $。在弱$ j $制度中,我们确定了一个完全自旋的偏振相,该相可以进一步支持由短程排斥相互作用驱动的自发性切恩绝缘相。这个阶段仍然存在面内铁磁磁性,而非交互的Chern绝缘子消失了受对称性的约束。随着$ j $的逐渐增加,铁磁性被抑制,系统首先被大磁化磁化变为部分偏振,然后进入非偏振相,基态呈现出消失的磁化。我们将这种非偏振相确定为具有列荷密度波的绝缘体。最后,我们讨论了理论发现的潜在实验观察。
We study the quantum phase diagram of spinful fermions on kagome lattice with half-filled lowest flat bands. To understand the competition between magnetism, flat band frustration, and repulsive interactions, we adopt an extended $t$-$J$ model, where the hopping energy $t$, antiferromagnetic Heisenberg interaction $J$, and short-range neighboring Hubbard interaction $V$ are considered. In the weak $J$ regime, we identify a fully spin-polarized phase, which can further support the spontaneous Chern insulating phase driven by the short-range repulsive interaction. This phase still emerges with in-plane ferromagnetism, whereas the non-interacting Chern insulator disappears constrained by symmetry. As $J$ gradually increases, the ferromagnetism is suppressed and the system first becomes partially-polarized with large magnetization and then enters a non-polarized phase with the ground state exhibiting vanishing magnetization. We identify this non-polarized phase as an insulator with a nematic charge density wave. In the end, we discuss the potential experimental observations of our theoretical findings.