论文标题
堆叠引起的磁挫败感和螺旋旋转液体
Stacking-induced magnetic frustration and spiral spin liquid
论文作者
论文摘要
就像魔术角扭曲双层石墨元中的扭曲控制一样,堆叠控制是操纵固体的基本特性,尤其是范德华材料的另一种机械方法。我们探索了堆叠引起的磁性挫败感以及多层三角晶格抗铁磁铁上的螺旋旋转液体,该系统是由与竞争性内层和层间耦合的ABC堆叠建造的。通过结合列键理论和自洽的高斯近似,我们为此ABC堆叠的多层磁体建立了相图。结果表明,该系统支持互惠空间中具有多个退化的螺旋线的广泛的螺旋旋转液体,将低温螺旋阶和高温无特征Paramagnet分开。从螺旋旋转液体状态到螺旋顺序的过渡是一阶。我们进一步表明,即使在诸如进一步的邻居内部交换之类的小扰动中,螺旋旋转的行为仍然存在。讨论了与ABC堆叠磁体的连接,ISING或Planar自旋各向异性的影响以及堆叠工程量子磁体的前景。
Like the twisting control in magic angle twisted bilayer graphenes, the stacking control is another mechanical approach to manipulate the fundamental properties of solids, especially the van der Waals materials. We explore the stacking-induced magnetic frustration and the spiral spin liquid on a multilayer triangular lattice antiferromagnet where the system is built from ABC stacking with competing intralayer and interlayers couplings. By combining the nematic bond theory and the self-consistent Gaussian approximation, we establish the phase diagram for this ABC-stacked multilayer magnet. It is shown that, the system supports a wide regime of spiral spin liquid with multiple degenerate spiral lines in the reciprocal space, separating the low-temperature spiral order and the high-temperature featureless paramagnet. The transition to the spiral order from the spiral spin liquid regime is first order. We further show that the spiral-spin-liquid behavior persists even with small perturbations such as further neighbor intralayer exchanges. The connection to the ABC-stacked magnets, the effects of Ising or planar spin anisotropy, and the outlook on the stacking-engineered quantum magnets are discussed.