The Electron-Phonon Interaction of Low-Dimensional and Multi-Dimensional Materials from He Atom Scattering
Abstract
Atom scattering is becoming recognized as a sensitive probe of the electron-phonon interaction parameter at metal and metal-overlayer surfaces. Here, the theory is developed linking to the thermal attenuation of atom scattering spectra (in particular, the Debye-Waller factor), to conducting materials of different dimensions, from quasi-one dimensional systems such as W(110):H(11) and Bi(114), to quasi-two dimensional layered chalcogenides and high-dimensional surfaces such as quasicrystalline 2ML-Ba(0001)/Cu(001) and d-AlNiCo(00001). Values of obtained using He atoms compare favorably with known values for the bulk materials. The corresponding analysis indicates in addition the number of layers contributing to the electron-phonon interaction that is measured in an atom surface collision.
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Cite
@article{arxiv.2004.09998,
title = {The Electron-Phonon Interaction of Low-Dimensional and Multi-Dimensional Materials from He Atom Scattering},
author = {G. Benedek and J. R. Manson and S. Miret-Artés},
journal= {arXiv preprint arXiv:2004.09998},
year = {2020}
}
Comments
23 pages, 5 figures, 1 table