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Investigation of electron-phonon coupling in epitaxial silicene by in situ Raman spectroscopy

journal contribution
posted on 2024-11-16, 09:39 authored by Jincheng Zhuang, Xun XuXun Xu, Yi Du, Kehui Wu, Lan Chen, Weichang Hao, Jiaou Wang, Wai Kong Yeoh, Xiaolin WangXiaolin Wang, Shi DouShi Dou
We report that the special coupling between Dirac fermion and lattice vibrations, in other words, electron-phonon coupling (EPC), in silicene layers on an Ag(111) surface was probed by in situ Raman spectroscopy. We find the EPC is significantly modulated due to tensile strain, which results from the lattice mismatch between silicene and the substrate, and the charge doping from the substrate. The special phonon modes corresponding to two-dimensional electron gas scattering at the edge sites in the silicene were identified. Detecting the relationship between EPC and Dirac fermions through Raman scattering will provide a direct route to investigate the exotic property in buckled two-dimensional honeycomb materials.

Funding

Design and exploration of novel p-block materials for visible light photocatalysis

Australian Research Council

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Combined scanning tunnelling microscope system for materials characterisation and manipulation at nano scale

Australian Research Council

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A complete near-field scanning optical microscope for advanced characterisation of novel and functional materials

Australian Research Council

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History

Citation

Zhuang, J., Xu, X., Du, Y., Wu, K., Chen, L., Hao, W., Wang, J., Yeoh, W. Kong., Wang, X. & Dou, S. Xue. (2015). Investigation of electron-phonon coupling in epitaxial silicene by in situ Raman spectroscopy. Physical Review B: Condensed Matter and Materials Physics, 91 (16), 161409-1-161409-5.

Journal title

Physical Review B - Condensed Matter and Materials Physics

Volume

91

Issue

16

Language

English

RIS ID

100617

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