论文标题
在Kagome晶格上的各向异性自旋模型中的手性相变和热厅效应
Chiral phase transition and thermal Hall effect in an anisotropic spin model on the kagome lattice
论文作者
论文摘要
我们介绍了在Kagome晶格中使用$ xxz $各种偶然的延长的海森堡模型中的热厅效应的研究。该模型的特殊性是,在经典情况下,对于参数空间中的一个宽区域,外部磁场会引起手性对称性破裂:基态是双重变性$ q = 0 $ q = 0 $顺序,具有正净或负净chirality。在这里,我们专注于使用线性旋转波理论在热门电导率中这种手性相变的效果。我们探索拓扑并计算宏伟带的Chern数字,从而获得了各种拓扑相变。我们还计算出与手性相变相关的临界温度($ t_c^{sw} $)。我们的主要结果是,由于自发的手性对称性在低温下破裂而导致的$ t> t_c^{sw} $无效的热厅电导率变为非零。因此,我们提出了一个简单的模型,可以在其中“打开/关闭磁场并加热或冷却系统的热传输属性”。
We present a study of the thermal Hall effect in the extended Heisenberg model with $XXZ$ anisotropy in the kagome lattice. This model has the particularity that, in the classical case, and for a broad region in parameter space, an external magnetic field induces a chiral symmetry breaking: the ground state is a doubly degenerate $q=0$ order with either positive or negative net chirality. Here, we focus on the effect of this chiral phase transition in the thermal Hall conductivity using Linear-Spin-Waves theory. We explore the topology and calculate the Chern numbers of the magnonic bands, obtaining a variety of topological phase transitions. We also compute the magnonic effect to the critical temperature associated with the chiral phase transition ($T_c^{SW}$). Our main result is that, the thermal Hall conductivity, which is null for $T>T_c^{SW}$, becomes non-zero as a consequence of the spontaneous chiral symmetry breaking at low temperatures. Therefore, we present a simple model where it is possible to "switch" on/off the thermal transport properties introducing a magnetic field and heating or cooling the system.