The electron–phonon interaction (or mass-enhancement (ME) factor) at the hydrogen-covered (110) surface of Mo1–xRexalloys has been derived for three different Re concentrations, x = 0.05, 0.15, 0.25, from the incident-energy dependence of Helium atom scattering (HAS) intensities. It is shown that the ME factor may also be extracted, in the case of stepped surfaces, from the maxima of the drift spectra, as well as from the intensities of the diffuse elastic peak and of the inelastic scattering from Rayleigh waves. It is confirmed that the ME factor, and therefore the superconducting critical temperature, increase with Re concentration, together with the charge-density wave gap occurring in the hole–electron dispersion curve of the quasi-one-dimensional free electron gas, observed long ago with inelastic HAS in H-covered Mo1–xRexalloys.

Benedek, G., Flach, B., Manson, J., Miret-Artes, S., Toennies, J. (2025). The Electron–Phonon Interaction at the (110) Surface of Hydrogen-Covered Mo1–RexAlloys from Helium Atom Scattering. JOURNAL OF PHYSICAL CHEMISTRY. C, 129(39), 17632-17642 [10.1021/acs.jpcc.5c04084].

The Electron–Phonon Interaction at the (110) Surface of Hydrogen-Covered Mo1–RexAlloys from Helium Atom Scattering

Benedek G.;
2025

Abstract

The electron–phonon interaction (or mass-enhancement (ME) factor) at the hydrogen-covered (110) surface of Mo1–xRexalloys has been derived for three different Re concentrations, x = 0.05, 0.15, 0.25, from the incident-energy dependence of Helium atom scattering (HAS) intensities. It is shown that the ME factor may also be extracted, in the case of stepped surfaces, from the maxima of the drift spectra, as well as from the intensities of the diffuse elastic peak and of the inelastic scattering from Rayleigh waves. It is confirmed that the ME factor, and therefore the superconducting critical temperature, increase with Re concentration, together with the charge-density wave gap occurring in the hole–electron dispersion curve of the quasi-one-dimensional free electron gas, observed long ago with inelastic HAS in H-covered Mo1–xRexalloys.
Articolo in rivista - Articolo scientifico
Charge density; Density of gases; Electron gas; Electrons; Hole concentration; Hydrogen; Inelastic scattering; Phonons; Surface scattering
English
16-set-2025
2025
129
39
17632
17642
open
Benedek, G., Flach, B., Manson, J., Miret-Artes, S., Toennies, J. (2025). The Electron–Phonon Interaction at the (110) Surface of Hydrogen-Covered Mo1–RexAlloys from Helium Atom Scattering. JOURNAL OF PHYSICAL CHEMISTRY. C, 129(39), 17632-17642 [10.1021/acs.jpcc.5c04084].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/622441
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