Electron-phonon coupling in C60 using hybrid functionals

Laflamme Janssen, Jonathan;Côté, Michel;Louie, Steven;Cohen, Marvin
(2010) Physical Review B — Vol. 81, n° 7, p. 73106 (2010)

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Authors
  • Laflamme Janssen, JonathanUCLouvain
    Author
  • Côté, MichelUniversité de Montréal
    Collaborator
  • Louie, StevenUniversity of California at Berkeley
    Collaborator
  • Cohen, MarvinUniversity of California at Berkeley
    Collaborator
Abstract
The calculations of the electron-phonon coupling in C60 molecules are analyzed in the context of hybrid functionals within the density-functional theory (DFT) approach. We find that increasing the contribution of the exchange energy calculated with a Fock operator in a functional from 0 to 30% has little impact on structural properties and phonon frequencies, but it generates a strong increase of the total electron-phonon coupling (similar to 40%). The resulting electron-phonon couplings for each vibrational mode are in better agreement with experimental data. In particular, the Hg vibrational modes contribution to the total coupling increased from 67 to 94 meV, which compares favorably with the most recent experimental value of 97 meV. With this new result, the deduced electron-phonon coupling parameter lambda was increased from a range of 0.3-0.6 to 0.4-0.9, which now overlaps with the distribution of experimental values (0.7-1.2). Thus, the disagreements found in the literature about superconductivity-related properties in fullerides may be in part explained by the great sensitivity of those DFT results to the choice of functional.
Affiliations
  • Université de MontréalDépartement de physique

Citations

Laflamme Janssen, J. (2010). Electron-phonon coupling in C60 using hybrid functionals. Physical Review B, 81(7), 73106. https://doi.org/10.1103/PhysRevB.81.073106 (Original work published 2010)