School of Physics and Technology, Wuhan University, Wuhan, 430072, China.
Hubei Jiufengshan Laboratory, Wuhan, 430074, China.
Nat Commun. 2023 Apr 28;14(1):2465. doi: 10.1038/s41467-023-38175-4.
The fabrication of one-dimensional (1D) magnetic systems on solid surfaces, although of high fundamental interest, has yet to be achieved for a crossover between two-dimensional (2D) magnetic layers and their associated 1D spin chain systems. In this study, we report the fabrication of 1D single-unit-cell-width CrCl atomic wires and their stacked few-wire arrays on the surface of a van der Waals (vdW) superconductor NbSe. Scanning tunneling microscopy/spectroscopy and first-principles calculations jointly revealed that the single wire shows an antiferromagnetic large-bandgap semiconducting state in an unexplored structure different from the well-known 2D CrCl phase. Competition among the total energies and nanostructure-substrate interfacial interactions of these two phases result in the appearance of the 1D phase. This phase was transformable to the 2D phase either prior to or after the growth for in situ or ex situ manipulations, in which the electronic interactions at the vdW interface play a nontrivial role that could regulate the dimensionality conversion and structural transformation between the 1D-2D CrCl phases.
在二维(2D)磁性层及其相关的一维自旋链系统之间实现交叉的一维(1D)磁性系统的表面制造,尽管具有很高的基础研究意义,但尚未实现。在这项研究中,我们报告了在范德华(vdW)超导体 NbSe 表面上制造 1D 单单元宽度 CrCl 原子线及其堆叠的少数线阵列。扫描隧道显微镜/光谱学和第一性原理计算联合揭示,单根线显示出一种在未知结构中不同于众所周知的 2D CrCl 相的反铁磁大带隙半导体状态。这两个相的总能量和纳米结构-衬底界面相互作用之间的竞争导致 1D 相的出现。这种相可以在原位或异位操作之前或之后转化为 2D 相,其中 vdW 界面处的电子相互作用起着重要作用,可以调节 1D-2D CrCl 相之间的维度转换和结构转变。