论文标题

通过超精美各向异性测定单个原子态轨道的实验测定

Experimental Determination of a Single Atom Ground State Orbital through Hyperfine Anisotropy

论文作者

Farinacci, Laëtitia, Veldman, Lukas M., Willke, Philip, Otte, Sander

论文摘要

从历史上看,电子自旋共振(ESR)为托管自旋中心的样品的电子,磁性和化学结构提供了极好的见解。特别是,电子与核自旋之间的超精细相互作用产生了这些中心的宝贵结构信息。近年来,ESR和扫描隧道显微镜(ESR-STM)的组合已允许在绑定A表面上的磁原子的单个旋转中心上获取此类信息,同时还提供了有关结合位点的空间信息。在这里,我们通过矢量磁场中的测量值对MGO/AG(001)单个钛原子的超精细原子进行全角依赖性研究。我们观察到G因子和超细张量的强烈各向异性。将超细分裂的结果与从STM图像获得的结合位点的对称特性和基本点电荷模型相结合,使我们能够预测钛原子的电子基态构型的形状。仅依靠实验值,此方法为在表面上的自旋中心进行电子结构分析的新协议铺平了道路。

Historically, electron spin resonance (ESR) has provided excellent insight into the electronic, magnetic, and chemical structure of samples hosting spin centers. In particular, the hyperfine interaction between the electron and the nuclear spins yields valuable structural information of these centers. In recent years, the combination of ESR and scanning tunneling microscopy (ESR-STM) has allowed to acquire such information on individual spin centers of magnetic atoms bound atop a surface, while additionally providing spatial information about the binding site. Here, we conduct a full angle-dependent investigation of the hyperfine splitting for individual titanium atoms on MgO/Ag(001) by measurements in a vector magnetic field. We observe strong anisotropy in both the g-factor and the hyperfine tensor. Combining the results of the hyperfine splitting with the symmetry properties of the binding site obtained from STM images and a basic point charge model allows us to predict the shape of the electronic ground state configuration of the titanium atom. Relying on experimental values only, this method paves the way for a new protocol for electronic structure analysis for spin centers on surfaces.

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