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Integrating ferromagnetism and ferroelectricity in an iron chalcogenide monolayer: a first-principles study

机译:铁磁性和铁电性在硫族化铁单层中积分:第一性原理研究

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Two-dimensional (2D) ferro-type materials have received great attention owing to the remarkable polarization effect in optoelectronics and spintronics. Using the first-principles method, the coupling between ferromagnetism and ferroelectricity is investigated in a multiferroic Janus 1T-FeSSe monolayer, which has a strong Stoner ferromagnetic ground state. The magnetic anisotropy energy (MAE) is apparently impacted by the out-of-plane asymmetry donated ferroelectricity, which is reflected by the asymmetry of the Z-MAE image. The easy magnetization axis of Janus FeSSe is the +y axis with a large MAE of 0.59 meV, rooting in unpaired d electrons of Fe atoms. The transformation of band splitting and Fermi surface can be effectively engineered by different magnetic polarization directions. The ferromagnetic (FM) coupling of the FeSSe monolayer is very robust under external strain within the range of −6 to 6, while the strength of magnetic moment of Fe atoms and polarization are easily strain-engineered, the intrinsic mechanism of which can be elaborated by the GKA rules that depend on angles and distances. This multiferroic FeSSe monolayer provides a new platform for exploring the coupling of 2D ferromagnetism and ferroelectricity and designing low-dimensional multiferroic electronics.
机译:二维(2 d) ferro-type材料由于卓越的备受关注在光电子学和极化的影响自旋电子学。铁磁性和之间的耦合研究了铁电性多铁性Janus 1 t-fesse单层的强大的碎石机铁磁基态。磁各向异性能(美)是显然的捐赠出平面不对称的影响铁电性,反映的不对称的Z-MAE形象。Janus雌株的磁化轴+ y轴0.59大美兆电子伏,在未配对加油d铁原子的电子。乐队分裂和费密面有效地由不同的磁性极化方向。耦合的雌株单层非常健壮在外部应变−6%的范围内6%,而铁的磁矩的力量原子和极化很容易strain-engineered的内在机制GKA可以阐述的规则吗取决于角度和距离。雌株单层提供了一个新的平台2 d铁磁性耦合和探索铁电性和设计低维由电子产品。

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