Leeuwenhoek Maarten, Norte Richard A, Bastiaans Koen M, Cho Doohee, Battisti Irene, Blanter Yaroslav M, Gröblacher Simon, Allan Milan P
Kavli Institute of Nanoscience, Delft University of Technology, Lorentzweg 1, 2628CJ Delft, The Netherlands. Leiden Institute of Physics, Leiden University, Niels Bohrweg 2, 2333CA Leiden, The Netherlands.
Nanotechnology. 2019 Aug 16;30(33):335702. doi: 10.1088/1361-6528/ab1c7f. Epub 2019 Apr 25.
We report on the fabrication and performance of a new kind of tip for scanning tunneling microscopy. By fully incorporating a metallic tip on a silicon chip using modern micromachining and nanofabrication techniques, we realize so-called smart tips and show the possibility of device-based STM tips. Contrary to conventional etched metal wire tips, these can be integrated into lithographically defined electrical circuits. We describe a new fabrication method to create a defined apex on a silicon chip and experimentally demonstrate the high performance of the smart tips, both in stability and resolution. In situ tip preparation methods are possible and we verify that they can resolve the herringbone reconstruction and Friedel oscillations on Au(111) surfaces. We further present an overview of possible applications.
我们报告了一种新型扫描隧道显微镜尖端的制造及其性能。通过使用现代微加工和纳米制造技术将金属尖端完全集成到硅芯片上,我们实现了所谓的智能尖端,并展示了基于器件的STM尖端的可能性。与传统的蚀刻金属丝尖端不同,这些尖端可以集成到光刻定义的电路中。我们描述了一种在硅芯片上创建确定顶点的新制造方法,并通过实验证明了智能尖端在稳定性和分辨率方面的高性能。原位尖端制备方法是可行的,并且我们验证了它们能够分辨Au(111)表面上的人字形重构和弗里德尔振荡。我们还概述了可能的应用。