Recent theory has demonstrated that the value of the electron-phonon coupling strengthλcan be extracted directly from the thermal attenuation (Debye-Waller factor) of helium atom scattering reflectivity. This theory is here extended to multivalley semimetal systems and applied to the case of graphene on different metal substrates and graphite. It is shown thatλrapidly increases for decreasing graphene-substrate binding strength. Two different calculational models are considered which produce qualitatively similar results for the dependence ofλon binding strength. These models predict, respectively, values ofλHAS= 0.89 and 0.32 for a hypothetical flat free-standing single-layer graphene with cyclic boundary conditions. The method is suitable for analysis and characterization of not only the graphene overlayers considered here, but also other layered systems such as twisted graphene bilayers.

Benedek, G., Manson, J., Miret-Artes, S. (2021). The electron-phonon coupling constant for single-layer graphene on metal substrates determined from He atom scattering. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 23(13), 7575-7585 [10.1039/d0cp04729e].

The electron-phonon coupling constant for single-layer graphene on metal substrates determined from He atom scattering

Benedek G.;
2021

Abstract

Recent theory has demonstrated that the value of the electron-phonon coupling strengthλcan be extracted directly from the thermal attenuation (Debye-Waller factor) of helium atom scattering reflectivity. This theory is here extended to multivalley semimetal systems and applied to the case of graphene on different metal substrates and graphite. It is shown thatλrapidly increases for decreasing graphene-substrate binding strength. Two different calculational models are considered which produce qualitatively similar results for the dependence ofλon binding strength. These models predict, respectively, values ofλHAS= 0.89 and 0.32 for a hypothetical flat free-standing single-layer graphene with cyclic boundary conditions. The method is suitable for analysis and characterization of not only the graphene overlayers considered here, but also other layered systems such as twisted graphene bilayers.
Articolo in rivista - Review Essay
Electron correlations; Electron scattering; Electron-phonon interactions; Substrates
English
5-nov-2020
2021
23
13
7575
7585
open
Benedek, G., Manson, J., Miret-Artes, S. (2021). The electron-phonon coupling constant for single-layer graphene on metal substrates determined from He atom scattering. PHYSICAL CHEMISTRY CHEMICAL PHYSICS, 23(13), 7575-7585 [10.1039/d0cp04729e].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/622261
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