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范德华反铁磁二维材料的最新进展:合成、表征及器件应用

Recent Developments in van der Waals Antiferromagnetic 2D Materials: Synthesis, Characterization, and Device Implementation.

作者信息

Rahman Sharidya, Torres Juan F, Khan Ahmed Raza, Lu Yuerui

机构信息

School of Engineering, College of Engineering and Computer Science, The Australian National University, Canberra, ACT 2601, Australia.

ARC Centre for Quantum Computation and Communication Technology, Department of Quantum Science, Research School of Physics and Engineering, The Australian National University, Acton, ACT 2601, Australia.

出版信息

ACS Nano. 2021 Nov 23;15(11):17175-17213. doi: 10.1021/acsnano.1c06864. Epub 2021 Nov 15.

Abstract

Magnetism in two dimensions is one of the most intriguing and alluring phenomena in condensed matter physics. Atomically thin 2D materials have emerged as a promising platform for exploring magnetic properties, leading to the development of essential technologies such as supercomputing and data storage. Arising from spin and charge dynamics in elementary particles, magnetism has also unraveled promising advances in spintronic devices and spin-dependent optoelectronics and photonics. Recently, antiferromagnetism in 2D materials has received extensive attention, leading to significant advances in their understanding and emerging applications; such materials have zero net magnetic moment yet are internally magnetic. Several theoretical and experimental approaches have been proposed to probe, characterize, and modulate the magnetic states efficiently in such systems. This Review presents the latest developments and current status for tuning the magnetic properties in distinct 2D van der Waals antiferromagnets. Various state-of-the-art optical techniques deployed to investigate magnetic textures and dynamics are discussed. Furthermore, device concepts based on antiferromagnetic spintronics are scrutinized. We conclude with remarks on related challenges and technological outlook in this rapidly expanding field.

摘要

二维磁性是凝聚态物理中最引人入胜且极具吸引力的现象之一。原子级厚度的二维材料已成为探索磁性特性的一个有前景的平台,推动了诸如超级计算和数据存储等关键技术的发展。磁性源于基本粒子中的自旋和电荷动力学,在自旋电子器件以及自旋相关的光电子学和光子学领域也取得了有前景的进展。最近,二维材料中的反铁磁性受到了广泛关注,在对其理解和新兴应用方面取得了重大进展;此类材料净磁矩为零,但内部具有磁性。已经提出了几种理论和实验方法来有效地探测、表征和调制这类系统中的磁态。本综述介绍了在不同二维范德华反铁磁体中调控磁性特性的最新进展和现状。讨论了用于研究磁结构和动力学的各种先进光学技术。此外,还审视了基于反铁磁自旋电子学的器件概念。我们最后对这个迅速发展的领域中的相关挑战和技术前景进行了评论。

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