论文标题

halide halide单层:二维4F磁铁的肥沃家族

Gadolinium halide monolayers: a fertile family of two-dimensional 4f magnets

论文作者

You, Haipeng, Ding, Ning, Chen, Jun, Yao, Xiaoyan, Dong, Shuai

论文摘要

二维(2D)磁体具有在下一代信息设备中应用的巨大潜力。自最近发现单层CRI $ _3 $和几层CR $ _2 $ _2 $ ge $ _2 $ _2 $ te $ _6 $中的固有2D磁性的实验发现以来,对追求更多的2D磁铁的刺激并揭示了他们有趣的物理特性。与基于$ 3D $电子的磁力相比,$ 4F $的电子可以提供更大的磁矩和更强的自旋轨道耦合,但在2D表单中的研究要少得多。仅在近年来,该领域才获得了一些令人兴奋的结果。在这个迷你审查中,我们将从理论方面介绍2D GD卤化物的最新进展。值得注意的是,GD的$ 4F $和5D $轨道都在这些材料中扮演关键角色。对于gd $ x_2 $($ x $ = i,br,cl和f)单层和相关的janus单层,具有大型交流的强大铁磁词来自$ 4F^7 $+$ 5D^1 $ hybridization gd $^$^$^{2+} $。空间扩展的$ 5D $电子作为桥梁本地化$ 4F $旋转的桥梁。对于GD $ X_3 $单层,金属原子的插入可以将电子掺入GD的$ 5D $轨道中,这会导致许多有趣的物理特性,例如铁弹性,铁磁性和各向异性电导。简而言之,GD Halides建立了一种有效的策略,可以利用2D材料中的$ F $ - 电子磁性。

Two-dimensional (2D) magnets have great potentials for applications in next-generation information devices. Since the recent experimental discovery of intrinsic 2D magnetism in monolayer CrI$_3$ and few-layer Cr$_2$Ge$_2$Te$_6$, intensive studies have been stimulated in pursuing more 2D magnets and revealing their intriguing physical properties. In comparison to the magnetism based on $3d$ electrons, $4f$ electrons can provide larger magnetic moments and stronger spin-orbit coupling, but have been much less studied in the 2D forms. Only in very recent years, some exciting results have been obtained in this area. In this mini-review, we will introduce some recent progress in 2D Gd halides from a theoretical aspect. It is noteworthy that $4f$ and $5d$ orbitals of Gd both play key roles in these materials. For Gd$X_2$ ($X$=I, Br, Cl and F) monolayers and related Janus monolayers, robust ferromagnetism with large exchanges comes from the $4f^7$+$5d^1$ hybridization of Gd$^{2+}$. The spatially expanded $5d$ electrons act as a bridge to couple localized $4f$ spins. For Gd$X_3$ monolayers, the intercalation of metal atoms can dope electrons into Gd's $5d$ orbitals, which leads to numerous intriguing physical properties, such as ferroelasticity, ferromagnetism, and anisotropic conductance. In brief, Gd halides establish an effective strategy to take advantage of $f$-electron magnetism in 2D materials.

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