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几层范德华铁磁半导体中磁性的电场调控

Electric-field control of magnetism in a few-layered van der Waals ferromagnetic semiconductor.

作者信息

Wang Zhi, Zhang Tongyao, Ding Mei, Dong Baojuan, Li Yanxu, Chen Maolin, Li Xiaoxi, Huang Jianqi, Wang Hanwen, Zhao Xiaotian, Li Yong, Li Da, Jia Chuankun, Sun Lidong, Guo Huaihong, Ye Yu, Sun Dongming, Chen Yuansen, Yang Teng, Zhang Jing, Ono Shimpei, Han Zheng, Zhang Zhidong

机构信息

Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang, China.

School of Material Science and Engineering, University of Science and Technology of China, Anhui, China.

出版信息

Nat Nanotechnol. 2018 Jul;13(7):554-559. doi: 10.1038/s41565-018-0186-z. Epub 2018 Jul 2.

Abstract

Manipulating a quantum state via electrostatic gating has been of great importance for many model systems in nanoelectronics. Until now, however, controlling the electron spins or, more specifically, the magnetism of a system by electric-field tuning has proven challenging. Recently, atomically thin magnetic semiconductors have attracted significant attention due to their emerging new physical phenomena. However, many issues are yet to be resolved to convincingly demonstrate gate-controllable magnetism in these two-dimensional materials. Here, we show that, via electrostatic gating, a strong field effect can be observed in devices based on few-layered ferromagnetic semiconducting CrGeTe. At different gate doping, micro-area Kerr measurements in the studied devices demonstrate bipolar tunable magnetization loops below the Curie temperature, which is tentatively attributed to the moment rebalance in the spin-polarized band structure. Our findings of electric-field-controlled magnetism in van der Waals magnets show possibilities for potential applications in new-generation magnetic memory storage, sensors and spintronics.

摘要

通过静电门控操纵量子态对于纳米电子学中的许多模型系统至关重要。然而,到目前为止,通过电场调谐来控制电子自旋,或者更具体地说,控制系统的磁性,已被证明具有挑战性。最近,原子级薄的磁性半导体因其新出现的物理现象而备受关注。然而,要令人信服地证明这些二维材料中的门控可控磁性,仍有许多问题有待解决。在此,我们表明,通过静电门控,在基于少层铁磁半导体CrGeTe的器件中可以观察到强场效应。在不同的栅极掺杂下,对所研究器件进行的微区克尔测量表明,在居里温度以下存在双极可调磁化回线,这初步归因于自旋极化能带结构中的磁矩重新平衡。我们在范德华磁体中电场控制磁性的发现展示了其在新一代磁存储器、传感器和自旋电子学中的潜在应用可能性。

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