首页> 外文期刊>The European physical journal, B. Condensed matter physics >Topological phase in 1D topological Kondo insulator: Z(2) topological insulator, Haldane-like phase and Kondo breakdown
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Topological phase in 1D topological Kondo insulator: Z(2) topological insulator, Haldane-like phase and Kondo breakdown

机译:1D拓扑Kondo绝缘体中的拓扑阶段:Z(2)拓扑绝缘体,卤代相位和Kondo击穿

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摘要

We have simulated a half-filled 1D p-wave periodic Anderson model with numerically exact projector quantum Monte Carlo technique, and the system is indeed located in the Haldane-like state as detected in previous works on the p-wave Kondo lattice model, though the soluble non-interacting limit corresponds to the conventional Z(2) topological insulator. The site-resolved magnetization in an open boundary system and strange correlator for the periodic boundary have been used to identify the mentioned topological states. Interestingly, the edge magnetization in the Haldane-like state is not saturated to unit magnetic moment due to the intrinsic charge fluctuation in our periodic Anderson-like model, which is beyond the description of the Kondo lattice-like model in existing literature. The finding here underlies the correlation driven topological state in this prototypical interacting topological state of matter and naive use of non-interacting picture should be taken care. Moreover, no trace of the surface Kondo breakdown at zero temperature is observed and it is suspected that frustration-like interaction may be crucial in inducing such radical destruction of Kondo screening. The findings here may be relevant to our understanding of interacting topological materials like topological Kondo insulator candidate SmB6.
机译:我们已经模拟了具有数值精确的投影仪量子蒙特卡罗技术的半填充的1D P波周期性和谐振模型,并且该系统确实位于P-Wave Kondo格子模型上的先前作品中检测到的卤化物状状态。可溶性的非相互作用极限对应于传统Z(2)拓扑绝缘体。用于周期边界的开放边界系统和奇怪相关器中的站点分辨磁化已经用于识别提到的拓扑状态。有趣的是,由于我们的周期性和谐的模型中的内在电荷波动,卤代状状态下的边缘磁化不饱和到单元磁矩,这超出了现有文献中的Kondo格子样模型的描述。这里的发现是基础的相关驱动的拓扑状态在这种原型的交互拓扑状态下,应当注意不关心非交互图像的。此外,观察到在零温度下的表面kondo击穿的痕迹,怀疑令人沮丧的相互作用可能是诱导昆基筛选的这种自由基破坏的关键。这里的发现可能与我们对拓扑Kondo绝缘体候选SMB6等互动拓扑材料的理解有关。

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