表面吸附氟的超导 FeSe 单层中的可控磁各向异性和铁弹性

Yueqiao Qu, Yu Liao, Zhixiang Wang, Liang Liu, Gang Yao
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引用次数: 0

摘要

原子薄二维磁体中的可控磁化对于开发自旋电子学来说是非常理想的。对于单层硒化铁来说,其磁场态尚未被完全了解,在构建高速和先进设备方面的潜力仍是未知数。利用密度泛函理论计算,我们证实单层 FeSe 的自旋有序为二椎体结构。随着氟(F)的吸附(F/FeSe),该体系表现出依赖于覆盖层的磁各向异性和多铁性,这可归因于贾恩-泰勒效应,有利于潜在的自旋电子应用。因此,我们的研究不仅为控制自旋电子特性和构建多铁氧体提供了一种有前途的方法,而且使 F/FeSe 成为磁性研究和实用高性能多功能器件的理想平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Controllable magnetic anisotropy and ferroelasticity in superconducting FeSe monolayer with surface fluorine adsorption
Controllable magnetization in atomically thin two-dimensional magnets is highly desirable for developing spintronics. For FeSe monolayer, its magnetic ground state is not yet fully understood, and the potential in constructing high-speed and advanced devices remains unknown. Using density functional theory calculations, we confirm the spin ordering of monolayer FeSe to be dimer texture. With Fluorine (F) adsorption (F/FeSe), the system exhibits a coverage dependent magnetic anisotropy and multiferroicity which can be attributable to the Jahn-Teller effect, being the benefit to potential spintronic applications. Intriguingly, an inherent coupling between magnetism and ferroelasticity in the most energetically favorable F/FeSe system is proposed. Our study thus not only provides a promising way to control the spintronic properties and construct multiferroics, but also renders F/FeSe an ideal platform for magnetism studies and practical high-performance multifunctional devices.
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