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Concurrence of quantum anomalous Hall and topological Hall effects in magnetic topological insulator sandwich heterostructures

机译:磁性拓扑绝缘体夹层异质结构的量子异常霍尔和拓扑霍尔效应的同意

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摘要

The quantum anomalous Hall (QAH) effect is a consequence of non-zero Berry curvature in momentum space. The QAH insulator harbours dissipation-free chiral edge states in the absence of an external magnetic field. However, the topological Hall (TH) effect, a hallmark of chiral spin textures, is a consequence of real-space Berry curvature. Here, by inserting a topological insulator (TI) layer between two magnetic TI layers, we realized the concurrence of the TH effect and the QAH effect through electric-field gating. The TH effect is probed by bulk carriers, whereas the QAH effect is characterized by chiral edge states. The appearance of the TH effect in the QAH insulating regime is a consequence of chiral magnetic domain walls that result from the gate-induced Dzyaloshinskii-Moriya interaction and occurs during the magnetization reversal process in the magnetic TI sandwich samples. The coexistence of chiral edge states and chiral spin textures provides a platform for proof-of-concept dis-sipationless spin-textured spintronic applications.
机译:量子异常大厅(QAH)效应是动量空间中非零浆果曲率的结果。 QAH绝缘体在没有外部磁场的情况下留下无散手性边缘状态。然而,拓扑大厅(TH)效应,手性旋转纹理的标志是真实空间浆果曲率的结果。这里,通过在两个磁性Ti层之间插入拓扑绝缘体(Ti)层,我们通过电场门控实现了Th效果和QAH效果的同时。散装载流子探测了该效果,而QAH效果的特征在于手性边缘状态。 QAH绝缘制度中的效果的外观是由栅极引起的Dzyaloshinskii-Moriya相互作用导致的手性磁畴壁的结果,并且在磁力Ti夹心样品中的磁化反转过程中发生。手性边缘状态和手性旋转纹理的共存为概念验证DIS无型旋转纹理的旋转式应用程序提供了平台。

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  • 来源
    《Nature Materials》 |2020年第7期|732-737|共6页
  • 作者单位

    Department of Physics The Pennsylvania State University University Park PA USA;

    Department of Physics The Pennsylvania State University University Park PA USA;

    Department of Physics The Pennsylvania State University University Park PA USA;

    Department of Physics The Pennsylvania State University University Park PA USA;

    Department of Physics University of New Hampshire Durham NH USA;

    Department of Physics The Pennsylvania State University University Park PA USA;

    Department of Physics The Pennsylvania State University University Park PA USA;

    Department of Physics The Pennsylvania State University University Park PA USA;

    Department of Physics The Pennsylvania State University University Park PA USA;

    Department of Physics The Pennsylvania State University University Park PA USA;

    Materials Research Institute The Pennsylvania State University University Park PA USA;

    Department of Physics University of New Hampshire Durham NH USA;

    Department of Physics The Pennsylvania State University University Park PA USA;

    Department of Physics The Pennsylvania State University University Park PA USA;

    Department of Physics The Pennsylvania State University University Park PA USA;

    Department of Physics The Pennsylvania State University University Park PA USA;

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