Institute of Experimental and Applied Physics, University of Regensburg, D-93053 Regensburg, Germany.
Phys Rev Lett. 2014 Feb 14;112(6):066101. doi: 10.1103/PhysRevLett.112.066101. Epub 2014 Feb 11.
The apex atom of a W scanning probe tip reveals a nonspherical charge distribution as probed by a CO molecule bonded to a Cu(111) surface [Welker et al., Science 336, 444 (2012). Three high-symmetry images were observed and related to three low-index crystallographic directions of the W bcc crystal. Open questions remained, such as the detectability of a contamination of W tips by sample material (here Cu), and the applicability of the method to distinguish other atomic species. In this work, we investigate bulk Cu and Fe tips. In both cases, we can associate our data with the fcc (Cu) and bcc (Fe) crystal structures using a simple electrostatic model that is based on the partial filling of d orbitals.
W 扫描探针尖端的顶点原子显示出非球形电荷分布,这是通过与 Cu(111) 表面键合的 CO 分子探测到的[Welker 等人,《科学》336,444(2012)]。观察到三个高对称图像,并与 W 体心立方晶体的三个低指数晶向相关。仍存在一些悬而未决的问题,例如探测 W 尖端是否被样品材料(此处为 Cu)污染,以及该方法是否适用于区分其他原子种类。在这项工作中,我们研究了块状 Cu 和 Fe 尖端。在这两种情况下,我们都可以使用基于部分填充 d 轨道的简单静电模型,将我们的数据与 fcc(Cu)和 bcc(Fe)晶体结构联系起来。