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Graphene analogue in (111)-oriented BaBiO3 bilayer heterostructures for topological electronics

机译:(111)取向BaBiO3双层异质结构中的石墨烯类似物用于拓扑电子学

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摘要

Topological electronics is a new field that uses topological charges as current-carrying degrees of freedom. For topological electronics applications, systems should host topologically distinct phases to control the topological domain boundary through which the topological charges can flow. Due to their multiple Dirac cones and the π-Berry phase of each Dirac cone, graphene-like electronic structures constitute an ideal platform for topological electronics; graphene can provide various topological phases when incorporated with large spin-orbit coupling and mass-gap tunability via symmetry-breaking. Here, we propose that a (111)-oriented BaBiO3 bilayer (BBL) sandwiched between large-gap perovskite oxides is a promising candidate for topological electronics by realizing a gap-tunable, and consequently a topology-tunable, graphene analogue. Depending on how neighboring perovskite spacers are chosen, the inversion symmetry of the BBL heterostructure can be either conserved or broken, leading to the quantum spin Hall (QSH) and quantum valley Hall (QVH) phases, respectively. BBL sandwiched by ferroelectric compounds enables switching of the QSH and QVH phases and generates the topological domain boundary. Given the abundant order parameters of the sandwiching oxides, the BBL can serve as versatile topological building blocks in oxide heterostructures.
机译:拓扑电子学是一个使用拓扑电荷作为载流自由度的新领域。对于拓扑电子应用,系统应具有不同的拓扑相位,以控制拓扑电荷可以流过的拓扑域边界。由于具有多个Dirac锥和每个Dirac锥的π-Berry相,类似石墨烯的电子结构构成了拓扑电子学的理想平台。石墨烯具有大的自旋轨道耦合和通过对称断裂的质量间隙可调性时,可以提供各种拓扑阶段。在这里,我们建议夹在大间隙钙钛矿氧化物之间的(111)取向的BaBiO3双层(BBL)是通过实现间隙可调的(因此是拓扑可调的)石墨烯类似物而成为拓扑电子学的有希望的候选人。根据相邻钙钛矿间隔物的选择方式,BBL异质结构的反型对称性可以保守或破坏,分别导致量子自旋霍尔(QSH)和量子谷霍尔(QVH)相。被铁电化合物夹在中间的BBL可以切换QSH和QVH相并生成拓扑域边界。鉴于夹层氧化物的丰富的有序参数,BBL可以用作氧化物异质结构中的通用拓扑构造块。

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