paper

Optical characterization of electron-phonon interactions at the saddle point in graphene

arXiv:1310.2683 · doi:10.1103/PhysRevLett.112.187401

Abstract

The role of electron-phonon interactions is experimentally and theoretically investigated near the saddle point absorption peak of graphene. The differential optical transmission spectra of multiple, non-interacting layers of graphene reveals the dominant role played by electron-acoustic phonon coupling in bandstructure renormalization. Using a Born approximation for electron-phonon coupling and experimental estimates of the dynamic phonon lattice temperature, we deduce the effective acoustic deformation potential to be eV. This value is in accord with recent theoretical predictions but differs substantially from those obtained using electrical transport measurements.

5 pages, 3 figures