Electron–Phonon Coupling Constant of 2H-MoS2(0001) from Helium-Atom Scattering

2019 ◽  
Vol 123 (6) ◽  
pp. 3682-3686 ◽  
Author(s):  
Gloria Anemone ◽  
Amjad Al Taleb ◽  
Giorgio Benedek ◽  
Andres Castellanos-Gomez ◽  
Daniel Farías
2017 ◽  
Vol 95 (19) ◽  
Author(s):  
Anton Tamtögl ◽  
Patrick Kraus ◽  
Nadav Avidor ◽  
Martin Bremholm ◽  
Ellen M. J. Hedegaard ◽  
...  

1993 ◽  
Vol T49B ◽  
pp. 584-592 ◽  
Author(s):  
N S Luo ◽  
P Ruggerone ◽  
J P Toennies ◽  
G Benedek

2017 ◽  
Vol 9 (1) ◽  
pp. 76-83 ◽  
Author(s):  
G. Benedek ◽  
Salvador Miret-Artés ◽  
J. P. Toennies ◽  
J. R. Manson

2020 ◽  
Vol 5 (4) ◽  
pp. 79
Author(s):  
Giorgio Benedek ◽  
Joseph R. Manson ◽  
Salvador Miret-Artés ◽  
Adrian Ruckhofer ◽  
Wolfgang E. Ernst ◽  
...  

Helium-atom scattering (HAS) spectroscopy from conducting surfaces has been shown to provide direct information on the electron–phonon interaction, more specifically the mass-enhancement factor λ from the temperature dependence of the Debye–Waller exponent, and the mode-selected electron–phonon coupling constants λQν from the inelastic HAS intensities from individual surface phonons. The recent applications of the method to superconducting ultra-thin films, quasi-1D high-index surfaces, and layered transition-metal and topological pnictogen chalcogenides are briefly reviewed.


Author(s):  
Giorgio Benedek ◽  
Joseph R. Manson ◽  
Salvador Miret-Artés

A theory, previously formulated for conducting surfaces, is extended to extract the electron-phonon coupling strength λ for graphene supported on metal substrates from the thermal attenuation (Debye–Waller factor) of helium scattering reflectivity.


Author(s):  
David J. Ward ◽  
Arjun Raghavan ◽  
Anton Tamtögl ◽  
Andrew P. Jardine ◽  
Emanuel Bahn ◽  
...  

Using helium atom scattering to identify adsorbate interactions and separate the effects of long and short range forces.


2020 ◽  
Vol 1686 ◽  
pp. 012049
Author(s):  
Alexander E Lukyanov ◽  
Vyacheslav D Neverov ◽  
Andrey V Krasavin ◽  
Alexey P Menushenkov

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