4.6 Review

Strong electron-phonon coupling in the σ band of graphene

期刊

PHYSICAL REVIEW B
卷 95, 期 7, 页码 -

出版社

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.95.075430

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资金

  1. VILLUM FONDEN via the Centre of Excellence for Dirac Materials [11744]
  2. Aarhus University Research Foundation
  3. Danish Council for Independent Research, Natural Sciences under the Sapere Aude program [DFF-4002-00029]
  4. Center for Nanostructured Graphene [DNRF58]
  5. Basque Departamento de Educacion
  6. UPV/EHU [IT-756-13]
  7. Spanish Ministerio de Economia y Competitividad [MAT2013-46593-C6-2-P]
  8. European Union FP7-ICT project PAMS [610446]
  9. Research Council of Norway [250555]
  10. Villum Fonden [00011744] Funding Source: researchfish

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First-principles studies of the electron-phonon coupling in graphene predict a high coupling strength for the sigma band with. values of up to 0.9. Near the top of the s band,. is found to be approximate to 0.7. This value is consistent with the recently observed kinks in the s band dispersion by angle-resolved photoemission. While the photoemission intensity from the s band is strongly influenced by matrix elements due to sublattice interference, these effects differ significantly for data taken in the first and neighboring Brillouin zones. This can be exploited to disentangle the influence of matrix elements and electron-phonon coupling. A rigorous analysis of the experimentally determined complex self-energy using Kramers-Kronig transformations further supports the assignment of the observed kinks to strong electron-phonon coupling and yields a coupling constant of 0.6(1), in excellent agreement with the calculations.

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