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Route towards Localization for Quantum Anomalous Hall Systems with Chern Number 2

机译:拥有Chern 2号量子异常霍尔系统的本地化途径

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摘要

The quantum anomalous Hall system with Chern number 2 can be destroyed by sufficiently strong disorder. During its process towards localization, it was found that the electronic states will be directly localized to an Anderson insulator (with Chern number 0), without an intermediate Hall plateau with Chern number 1. Here we investigate the topological origin of this phenomenon, by calculating the band structures and Chern numbers for disordered supercells. We find that on the route towards localization, there exists a hidden state with Chern number 1, but it is too short and too fluctuating to be practically observable. This intermediate state cannot be stabilized even after some “smart design” of the model and this should be a universal phenomena for insulators with high Chern numbers. By performing numerical scaling of conductances, we also plot the renormalization group flows for this transition, with Chern number 1 state as an unstable fixed point. This is distinct from known results, and can be tested by experiments and further theoretical analysis.
机译:具有足够强的无序性可以破坏具有2号Chern的量子异常霍尔系统。在其定位过程中,发现电子状态将直接定位到安德森绝缘子(车臣编号为0),而没有中间霍尔高原(车臣编号为1)。在这里,我们通过计算来研究这种现象的拓扑起源无序超级细胞的能带结构和Chern数我们发现,在走向本地化的道路上,存在一个隐身状态,其Chern数为1,但它太短且波动太大,几乎无法观察到。即使在模型的某些“智能设计”之后,这种中间状态也无法稳定,这对于具有高Chern数的绝缘子应该是普遍现象。通过对电导进行数值缩放,我们还绘制了此过渡的重归一化组流,其中Chern数为1的状态为不稳定的固定点。这与已知结果不同,可以通过实验和进一步的理论分析进行测试。

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