Transport properties of Hall-type quantum states in disordered bismuthene

IF 1.5 4区 物理与天体物理 Q2 PHYSICS, MULTIDISCIPLINARY Chinese Physics B Pub Date : 2024-04-01 DOI:10.1088/1674-1056/ad2605
Jiaojiao Zhou, Jiangying Yu, Shuguang Cheng, Hua Jiang
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Abstract

Bismuthene, an inherently hexagonal structure characterized by a huge bulk gap, offers a versatile platform for investigating the electronic transport of various topological quantum states. Using nonequilibrium Green’s function method and Landauer–Büttiker formula, we thoroughly investigate the transport properties of various Hall-type quantum states, including quantum spin Hall (QSH) edge states, quantum valley Hall kink (QVHK) states, and quantum spin–valley Hall kink (QSVHK) states, in the presence of various disorders. Based on the exotic transport features, a spin–valley filter, capable of generating a highly spin- and valley-polarized current, is proposed. The valley index and the spin index of the filtered QSVHK state are determined by the staggered potential and the intrinsic spin–orbit coupling, respectively. The efficiency of the spin–valley filter is supported by the spacial current distribution, the valley-resolved conductance, and the spin-resolved conductance. Compared with a sandwich structure for QSVHK, our proposed spin–valley filter can work with a much smaller size and is more accessible in the experiment.
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无序双钌中霍尔型量子态的输运特性
铋钌是一种固有的六边形结构,具有巨大的体隙,为研究各种拓扑量子态的电子输运提供了一个多功能平台。利用非平衡格林函数法和 Landauer-Büttiker 公式,我们深入研究了各种霍尔型量子态,包括量子自旋霍尔(QSH)边缘态、量子山谷霍尔扭结(QVHK)态和量子自旋-山谷霍尔扭结(QSVHK)态在各种失调情况下的输运特性。根据这些奇异的传输特征,我们提出了一种能产生高度自旋和谷极化电流的自旋谷滤波器。滤波 QSVHK 状态的谷指数和自旋指数分别由交错电势和本征自旋轨道耦合决定。空间电流分布、谷分辨电导和自旋分辨电导支持了自旋谷滤波器的效率。与用于 QSVHK 的三明治结构相比,我们提出的自旋谷滤波器可以在更小的尺寸下工作,而且在实验中更容易获得。
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来源期刊
Chinese Physics B
Chinese Physics B 物理-物理:综合
CiteScore
2.80
自引率
23.50%
发文量
15667
审稿时长
2.4 months
期刊介绍: Chinese Physics B is an international journal covering the latest developments and achievements in all branches of physics worldwide (with the exception of nuclear physics and physics of elementary particles and fields, which is covered by Chinese Physics C). It publishes original research papers and rapid communications reflecting creative and innovative achievements across the field of physics, as well as review articles covering important accomplishments in the frontiers of physics. Subject coverage includes: Condensed matter physics and the physics of materials Atomic, molecular and optical physics Statistical, nonlinear and soft matter physics Plasma physics Interdisciplinary physics.
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