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一种基于混合磁体的扫描隧道显微镜。

A hybrid magnet based scanning tunneling microscope.

作者信息

Wang Jihao, Geng Tao, Meng Wenjie, Huang Pengcheng, Zhao Kesen, Zhang Jing, Feng Qiyuan, Guo Tengfei, Xiang Kui, Hou Yubin, Chen Wenge, Lu Yalin, Lu Qingyou

机构信息

Anhui Province Key Laboratory of Condensed Matter Physics at Extreme Conditions, High Magnetic Field Laboratory and High Magnetic Field Laboratory of Anhui Province, Chinese Academy of Sciences, Hefei, Anhui 230031, China.

Anhui Laboratory of Advanced Photon Science and Technology, University of Science and Technology of China, Hefei, Anhui 230026, China.

出版信息

Rev Sci Instrum. 2020 May 1;91(5):053702. doi: 10.1063/1.5140423.

Abstract

In this paper, a scanning tunneling microscope (STM) is presented that operates in a 27.5 T magnetic field within a hybrid magnet. The coarse approach of the STM is realized by using an inertial piezoelectric motor, and the scanning is realized by using a miniature scanner, which stands alone on a sapphire base. A combined vibration isolation system consisting of a brick-rubber-brick stack and two springs is used to isolate the vibration generated from the magnet. An enclosed copper shield is used to prevent sound from entering the tip-sample junction. The sound and vibration isolation measures highly improve the stability of the STM imaging. All the materials selected to construct the STM head are nonmagnetic. The drift rates of the STM in the X-Y plane and Z direction are as low as 26.2 pm/min and 34.6 pm/min, respectively, under ambient conditions. The high performance of the homebuilt STM was demonstrated by graphite hexagonal lattice images obtained in magnet fields ranging from 0 T to 27.5 T even without the protection of a vacuum and low temperatures. As far as known, this is the first STM that operates in a hybrid magnet. It is also the first STM that can obtain graphite hexagonal lattice images in magnetic fields up to 27.5 T. Our results greatly contribute to the further STM studies under ambient conditions and ultrahigh magnetic fields.

摘要

本文介绍了一种扫描隧道显微镜(STM),它在混合磁体的27.5 T磁场中运行。STM的粗调通过使用惯性压电马达实现,扫描通过使用独立于蓝宝石基座的微型扫描仪实现。由砖-橡胶-砖堆叠和两个弹簧组成的组合式隔振系统用于隔离磁体产生的振动。使用封闭的铜屏蔽来防止声音进入针尖-样品界面。隔音和隔振措施极大地提高了STM成像的稳定性。构建STM探头所选用的所有材料都是非磁性的。在环境条件下,STM在X-Y平面和Z方向的漂移率分别低至26.2 pm/min和34.6 pm/min。即使没有真空和低温保护,在0 T至27.5 T的磁场中获得的石墨六边形晶格图像也证明了自制STM的高性能。据所知,这是第一台在混合磁体中运行的STM。它也是第一台能够在高达27.5 T的磁场中获得石墨六边形晶格图像的STM。我们的结果对在环境条件和超高磁场下的进一步STM研究有很大贡献。

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