Atomic structure, energetics, and dynamics of topological solitons in Indium chains on Si(111) surfaces
Mesoscale and Nanoscale Physics
2011-04-13 v3
Abstract
Based on scanning tunneling microscopy and first-principles theoretical studies, we characterize the precise atomic structure of a topological soliton in In chains grown on Si(111) surfaces. Variable-temperature measurements of the soliton population allow us to determine the soliton formation energy to be ~60 meV, smaller than one half of the band gap of ~200 meV. Once created, these solitons have very low mobility, even though the activation energy is only about 20 meV; the sluggish nature is attributed to the exceptionally low attempt frequency for soliton migration. We further demonstrate local electric field-enhanced soliton dynamics.
Keywords
Cite
@article{arxiv.1009.1088,
title = {Atomic structure, energetics, and dynamics of topological solitons in Indium chains on Si(111) surfaces},
author = {Hui Zhang and Jin-Ho Choi and Yang Xu and Xiuxia Wang and Xiaofang Zhai and Bing Wang and Changgan Zeng and Jun-Hyung Cho and Zhenyu Zhang and J. G. Hou},
journal= {arXiv preprint arXiv:1009.1088},
year = {2011}
}
Comments
5 pages, 3 figures