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Pure spin current devices based on ferromagnetic topological insulators

机译:基于铁磁拓扑绝缘体的纯自旋电流器件

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摘要

Two-dimensional topological insulators possess two counter propagating edge channels with opposite spin direction. Recent experimental progress allowed to create ferromagnetic topological insulators realizing a quantum anomalous Hall (QAH) state. In the QAH state one of the two edge channels disappears due to the strong ferromagnetic exchange field. We investigate heterostructures of topological insulators and ferromagnetic topological insulators by means of numerical transport calculations. We show that spin current flow in such heterostructures can be controlled with high fidelity. Specifically, we propose spintronic devices that are capable of creating, switching and detecting pure spin currents using the same technology. In these devices electrical currents are directly converted into spin currents, allowing a high conversion efficiency. Energy independent transport properties in combination with large bulk gaps in some topological insulator materials may allow operation even at room temperature.
机译:二维拓扑绝缘体具有两个反向旋转的反向传播边缘通道。最近的实验进展允许创建实现量子异常霍尔(QAH)状态的铁磁拓扑绝缘体。在QAH状态下,由于强铁磁交换场,两个边缘通道之一消失了。我们通过数值输运计算研究了拓扑绝缘子和铁磁拓扑绝缘子的异质结构。我们表明,可以以高保真度控制这种异质结构中的自旋电流。具体来说,我们提出了自旋电子器件,该器件能够使用相同的技术来创建,切换和检测纯自旋电流。在这些设备中,电流直接转换为自旋电流,从而实现高转换效率。与能量无关的传输特性,加上某些拓扑绝缘体材料中的大体积间隙,甚至可以在室温下运行。

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