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Recent Advances in Two-Dimensional Magnets: Physics and Devices towards Spintronic Applications

机译:二维磁铁最近的进展:朝向旋转式应用的物理和设备

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摘要

The emergence of low-dimensional nanomaterials has brought revolutionized development of magnetism, as the size effect can significantly influence the spin arrangement. Since the first demonstration of truly two-dimensional magnetic materials (2DMMs) in 2017, a wide variety of magnetic phases and associated properties have been exhibited in these 2DMMs, which offer a new opportunity to manipulate the spin-based devices efficiently in the future. Herein, we focus on the recent progress of 2DMMs and heterostructures in the aspects of their structural characteristics, physical properties, and spintronic applications. Firstly, the microscopy characterization of the spatial arrangement of spins in 2D lattices is reviewed. Afterwards, the optical probes in the light-matter-spin interactions at the 2D scale are discussed. Then, particularly, we systematically summarize the recent work on the electronic and spintronic devices of 2DMMs. In the section of electronic properties, we raise several exciting phenomena in 2DMMs, i.e., long-distance magnon transport, field-effect transistors, varying magnetoresistance behavior, and (quantum) anomalous Hall effect. In the section of spintronic applications, we highlight spintronic devices based on 2DMMs, e.g., spin valves, spin-orbit torque, spin field-effect transistors, spin tunneling field-effect transistors, and spin-filter magnetic tunnel junctions. At last, we also provide our perspectives on the current challenges and future expectations in this field, which may be a helpful guide for theorists and experimentalists who are exploring the optical, electronic, and spintronic properties of 2DMMs.
机译:低维纳米材料的出现已经带来了造型的磁性发展,因为尺寸效应可以显着影响自旋布置。由于2017年的真正二维磁性材料(2DMMS)的第一次演示,这些2DMMS在这些2DMMS中展出了各种各样的磁阶段和相关性能,这提供了新的机会,以便将来有效地操纵基于自旋的设备。在此,我们专注于其结构特征,物理性质和旋转型应用方面的2DMMS和异质结构的最近进展。首先,回顾了2D格子中旋转空间排列的显微镜表征。然后,讨论了2D规模的浅品 - 自旋相互作用中的光学探针。然后,特别是,我们系统地总结了近期2DMMS的电子和闪光设备的工作。在电子特性的部分中,我们在2DMMS中提高了几种激动人心的现象,即长距离氧元运输,场效应晶体管,不同的磁阻行为,(量子)异常霍尔效应。在Spintronic应用的部分中,我们突出了基于2DMMS的旋转式装置,例如旋转阀,旋转轨道扭矩,旋转场效应晶体管,自旋隧道场效应晶体管和旋转滤波磁隧道连接。最后,我们还提供了对这一领域目前的挑战和未来期望的观点,这可能是探索2DMMS光学,电子和旋转性能的理论家和实验主义者的有用指南。

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