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二维磁性晶体与新兴异质结构器件。

Two-dimensional magnetic crystals and emergent heterostructure devices.

作者信息

Gong Cheng, Zhang Xiang

机构信息

Nanoscale Science and Engineering Center, University of California, Berkeley, CA 94720, USA.

Faculties of Science and Engineering, University of Hong Kong, Hong Kong, P.R. China.

出版信息

Science. 2019 Feb 15;363(6428). doi: 10.1126/science.aav4450.

Abstract

Magnetism, originating from the moving charges and spin of elementary particles, has revolutionized important technologies such as data storage and biomedical imaging, and continues to bring forth new phenomena in emergent materials and reduced dimensions. The recently discovered two-dimensional (2D) magnetic van der Waals crystals provide ideal platforms for understanding 2D magnetism, the control of which has been fueling opportunities for atomically thin, flexible magneto-optic and magnetoelectric devices (such as magnetoresistive memories and spin field-effect transistors). The seamless integration of 2D magnets with dissimilar electronic and photonic materials opens up exciting possibilities for unprecedented properties and functionalities. We review the progress in this area and identify the possible directions for device applications, which may lead to advances in spintronics, sensors, and computing.

摘要

磁起源于基本粒子的电荷运动和自旋,它彻底改变了诸如数据存储和生物医学成像等重要技术,并继续在新兴材料和低维体系中催生新现象。最近发现的二维磁性范德华晶体为理解二维磁性提供了理想平台,对二维磁性的控制为原子级薄的柔性磁光和磁电器件(如磁阻存储器和自旋场效应晶体管)带来了诸多机遇。二维磁体与不同电子和光子材料无缝集成,为实现前所未有的特性和功能开辟了令人兴奋的可能性。我们回顾了该领域的进展,并确定了器件应用的可能方向,这可能会推动自旋电子学、传感器和计算领域的进步。

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