Emergent, Non‐Aging, Extendable, and Rechargeable Exchange Bias in 2D Fe3GeTe2 Homostructures Induced by Moderate Pressuring

反铁磁性 自旋电子学 材料科学 铁磁性 磁性 凝聚态物理 范德瓦尔斯力 交换偏差 光电子学 磁滞 纳米技术 磁化 物理 磁场 量子力学 磁各向异性 分子
作者
Caixing Liu,Huisheng Zhang,Shunhong Zhang,De Hou,Yonglai Liu,Hanqing Wu,Zhongzhu Jiang,HuaiXiang Wang,Zongwei Ma,Xuan Luo,Xiaoyin Li,Yuping Sun,Xiaohong Xu,Zhenyu Zhang,Zhigao Sheng
出处
期刊:Advanced Materials [Wiley]
卷期号:35 (1) 被引量:8
标识
DOI:10.1002/adma.202203411
摘要

As a crucial concept in magnetism and spintronics, exchange bias (ExB) measures the asymmetry in the hysteresis loop of a pinned ferromagnet (FM)/antiferromagnet (AFM) interface. Previous studies are mainly focused on FM/AFM heterostructures composed of conventional bulk materials, whose complex interfaces prohibit precise control and full understanding of the phenomenon. Here, the enabling power of 2D magnets is exploited to demonstrate the emergence, non-aging, extendability, and rechargeability of ExB in van der Waals Fe3 GeTe2 homostructures, upon moderate pressuring. The emergence of the ExB is attributed to a local stress-induced FM-to-AFM transition, as validated using first-principles calculations, and confirmed in magneto-optical Kerr effect and second harmonic generation measurements. It is also observed that, negligible ExB aging before the training effect suddenly takes place through avalanching, pronounced delay of the avalanche via timed pressure repetition (extendability), ExB recovery in the post-training sample upon refreshed pressuring (rechargeability), and demonstrate its versatile tunability. These striking findings offer unprecedented insights into the underlying principles of ExB and its training, with immense technological applications in sight.
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