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Fabrication of Gate-tunable Graphene Devices for Scanning Tunneling Microscopy Studies with Coulomb Impurities
Published on: July 24, 2015
Excitonic Effects in Phonons: Reshaping the Graphene Kohn Anomalies and Lifetimes
Alberto Guandalini1, Francesco Macheda1, Giovanni Caldarelli1
1Università di Roma La Sapienza, Dipartimento di Fisica, Piazzale Aldo Moro 5, I-00185 Roma, Italy.
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We develop an ab initio framework that captures the impact of electron-electron and electron-hole interactions on phonon properties. This enables the inclusion of excitonic effects in the optical phonon dispersions and lifetimes of graphene, both near the center (Γ) and at the border (K) of the Brillouin zone, at phonon-momenta relevant for Raman scattering and for the onset of the intrinsic electrical resistivity. Near K, we find a phonon redshift of ∼150 cm^{-1} and a 10× enhancement of the group velocity, together with a 5× increase in linewidths due to a 26× increase of the electron-phonon matrix elements. These effects persist for doping 2E_{F}<ℏω_{ph} and are quenched at higher dopings. Near Γ, the excitonic effects are minor because of the gauge field nature of the electron-phonon coupling at small phonon momentum.
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