English

A low-temperature scanning probe microscopy system with molecular beam epitaxy and optical access

Instrumentation and Detectors 2021-03-09 v1 Mesoscale and Nanoscale Physics Materials Science

Abstract

A low-temperature ultra-high vacuum scanning probe microscopy (SPM) system with molecular beam epitaxy capability and optical access was conceived, built, and tested in our lab. The design of the whole system is discussed here, with special emphasis on some critical parts. We made an SPM scanner head with a modified Pan-type design, enclosed by a double-layer cold room under a bath type cryostat. The scanner head is very rigid, compatible with optical access paths, and can accommodate both scanning tunneling microscope (STM) tips and atomic force sensors. Two piezo-actuated focus-lens stages are mounted on the two sides of the cold room to couple light in and out. To demonstrate the system performance, we performed STM and scanning tunneling spectroscopy studies. The herringbone reconstruction and atomic structure of Au(111) surface were clearly resolved. The dI/dV spectra of an Au(111) surface were obtained at 5 K. In addition, a periodic 2D tellurium (Te) structure was grown on Au(111) surface using MBE.

Keywords

Cite

@article{arxiv.2103.04210,
  title  = {A low-temperature scanning probe microscopy system with molecular beam epitaxy and optical access},
  author = {Ze-Bin Wu and Zhao-Yan Gao and Xi-Ya Chen and Yu-Qing Xing and Huan Yang and Geng Li and Ruisong Ma and Aiwei Wang and Jiahao Yan and Chengmin Shen and Shixuan Du and Qing Huan and Hong-Jun Gao},
  journal= {arXiv preprint arXiv:2103.04210},
  year   = {2021}
}
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