论文标题
对Potts nematic Quantum paramagnet的激子不稳定
Excitonic instability towards a Potts-nematic quantum paramagnet
论文作者
论文摘要
磁性挫败可能会导致特殊的磁性顺序,除了基本的磁对称性(即自旋旋转不变性和时间反转对称性)外,还可以打破晶格的离散对称性。在这项工作中,我们专注于沮丧的量子磁铁,并研究paramagnet和磁性有序状态之间的量子相变的性质,其三倍($ z_3 $)晶体旋转对称性损坏。我们预测过渡将在两个阶段发生,从而导致一个中间的列相,其中旋转对称性被损坏,但系统仍然存在磁性障碍。三态POTTS模型描述了列的过渡。该预测基于对paramagnet中两麦克努族激发形成的结合状态的分析,该状态变得无间隙,而单泥刺激仍然存在。通过考虑三种不同的晶格模型,我们证明了Potts纽语列通道中对两麦克农结合状态形成的通用不稳定性。我们提供了类似于BCS理论的结合能量的数值结果和一般的分析扰动公式。我们进一步讨论了许多不同的材料,这些材料实现了所考虑的模型的关键特征,从而为可能的实验观察提供了有希望的场所。
Magnetic frustration can lead to peculiar magnetic orderings that break a discrete symmetry of the lattice in addition to the fundamental magnetic symmetries (i.e., spin rotation invariance and time-reversal symmetry). In this work, we focus on frustrated quantum magnets and study the nature of the quantum phase transition between a paramagnet and a magnetically ordered state with broken threefold ($Z_3$) crystal rotation symmetry. We predict the transition to happen in two stages, giving rise to an intermediate nematic phase in which rotation symmetry is broken but the system remains magnetically disordered. The nematic transition is described by the three-state Potts model. This prediction is based on an analysis of bound states formed from two-magnon excitations in the paramagnet, which become gapless while single-magnon excitations remain gapped. By considering three different lattice models, we demonstrate a generic instability towards two-magnon bound state formation in the Potts-nematic nematic channel. We present both numerical results and a general analytical perturbative formula for the bound state binding energy similar to BCS theory. We further discuss a number of different materials that realize key features of the model considered, and thus provide promising venues for possible experimental observation.