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二维双极磁性半导体的最新进展。

Recent progress in 2D bipolar magnetic semiconductors.

作者信息

Chen Ju, Wang Xuening, An Yipeng, Gong Shi-Jing

机构信息

Department of Physics, School of Physics and Electronic Science, East China Normal University, Shanghai 200241, People's Republic of China.

School of Physics, Henan Normal University, Xinxiang 453007, People's Republic of China.

出版信息

J Phys Condens Matter. 2023 Nov 22;36(8). doi: 10.1088/1361-648X/ad0bff.

Abstract

Bipolar magnetic semiconductor (BMS) is a class of magnetic semiconductors, whose valence band maximum and conduction band minimum are fully spin-polarized with opposite spin directions. Due to the special energy band, half-metallicity can be easily obtained in BMS by gate voltage, and the spin polarization can be reversed between spin-up and down when the gate voltage switches from positive to negative. BMSs have great potential applications in spintronic devices, such as the field-effect spin valves, spin filters and spin transistors,. With the rapid progress of the two-dimensional (2D) magnetic materials, researchers have identified a series of potential intrinsic 2D BMS materials using high-throughput computational methods. Additionally, methods such as doping, application of external stress, introduction of external fields, stacking of interlayer antiferromagnetic semiconductors, and construction of Janus structures have endowed existing materials with BMS properties. This paper reviews the research progress of 2D BMS. These advancements provide crucial guidance for the design and synthesis of BMS materials and offer innovative pathways for the future development of spintronics.

摘要

双极磁性半导体(BMS)是一类磁性半导体,其价带最大值和导带最小值具有完全相反自旋方向的自旋极化。由于其特殊的能带结构,通过栅极电压可以很容易地在BMS中获得半金属性,并且当栅极电压从正变为负时,自旋极化可以在自旋向上和向下之间反转。BMS在自旋电子器件中具有巨大的潜在应用,如场效应自旋阀、自旋滤波器和自旋晶体管等。随着二维(2D)磁性材料的快速发展,研究人员利用高通量计算方法确定了一系列潜在的本征2D BMS材料。此外,诸如掺杂、施加外部应力、引入外部场、层间反铁磁半导体堆叠以及构建Janus结构等方法,已赋予现有材料BMS特性。本文综述了二维BMS的研究进展。这些进展为BMS材料的设计和合成提供了关键指导,并为自旋电子学的未来发展提供了创新途径。

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