论文标题

相关疾病诱导磁掺杂的拓扑绝缘子中的异常转运

Correlated disorder induced anomalous transport in magnetically doped topological insulators

论文作者

Okugawa, Takuya, Nag, Tanay, Kennes, Dante M.

论文摘要

我们检查了磁掺杂的拓扑绝缘子(Ti)薄膜的运输特性,约有相关的非磁性疾病。对于该疾病,我们选择具有随机阶段的准周期电位。我们将该疾病限制在中央区域,该区域与干净的量子自旋霍尔绝缘子(QSHI)状态耦合,并集中在二维中央区域的准周期性方向上。在对角线定向或纯纵向准周期性的情况下,我们发现不同的拓扑结构隔离器(TAI)阶段,带有量子异常的霍尔绝缘子(QAHI),量子旋转旋转的Chern绝缘子(QSCI)或QSHI阶段或QSHI阶段超过了大型绝缘强度。除了上述TAI相外,还发现了从扩展体积状态进行量化的转运状态,这些阶段也被观察到了不相关的疾病。对于准周期性的纯粹横向取向,新兴的QSHI和QSCI阶段持续到任意强大的疾病潜力。这些拓扑相变(除了安德森绝缘子阶段),可以从自我一致的天生近似中理解。

We examine the transport properties of magnetically doped topological insulator (TI) thin films subject to correlated non-magnetic disorder. For the disorder we choose a quasi-periodic potential with a random phase. We restrict the disorder to a central region, which is coupled to two leads in a clean quantum spin Hall insulator (QSHI) state and concentrate on different orientations of the quasi-periodicity in the two-dimensional central region. In the case of a diagonally oriented or purely longitudinal quasi-periodicity we find different topological Anderson insulator (TAI) phases, with a quantum anomalous Hall insulator (QAHI), a quantum spin Chern insulator (QSCI), or a QSHI phase being realized before the Anderson insulation takes over at large disorder strength. Quantized transport from extended bulk states is found for diagonal quasi-periodicity in addition to the above TAI phases that are also observed for the case of uncorrelated disorder. For a purely transverse orientation of the quasi-periodicity the emerging QSHI and QSCI phases persist to arbitrarily strong disorder potential. These topological phase transitions (except to the Anderson insulator phase), can be understood from a self consistent Born approximation.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源