Charge tuning of nonresonant magnetoexciton phonon interactions in graphene

Far from resonance, the coupling of the G-band phonon to magnetoexcitons in single layer graphene displays kinks and splittings versus filling factor that are well described by Pauli blocking and unblocking of inter- and intra-Landau level transitions. We explore the nonresonant electron-phonon coup...

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Veröffentlicht in:Physical review letters 2014-02, Vol.112 (5), p.056803-056803, Article 056803
Hauptverfasser: Rémi, Sebastian, Goldberg, Bennett B, Swan, Anna K
Format: Artikel
Sprache:eng
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Zusammenfassung:Far from resonance, the coupling of the G-band phonon to magnetoexcitons in single layer graphene displays kinks and splittings versus filling factor that are well described by Pauli blocking and unblocking of inter- and intra-Landau level transitions. We explore the nonresonant electron-phonon coupling by high-magnetic field Raman scattering while electrostatic tuning of the carrier density controls the filling factor. We show qualitative and quantitative agreement between spectra and a linearized model of electron-phonon interactions in magnetic fields. The splitting is caused by dichroism of left- and right-handed circular polarized light due to lifting of the G-band phonon degeneracy, and the piecewise linear slopes are caused by the linear occupancy of sequential Landau levels versus ν.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.112.056803