arXiv · 1110.4262
Electronic excitations and electron-phonon coupling in bulk graphite through Raman scattering in high magnetic fields
Abstract
We use polarized magneto-Raman scattering to study purely electronic excitations and the electron-phonon coupling in bulk graphite. At a temperature of 4.2 K and in magnetic fields up to 28 T we observe $K$-point electronic excitations involving Landau bands with $Δ|n|=0$ and with $Δ|n|=\pm2$ that can be selected by controlling the angular momentum of the excitation laser and of the scattered light. The magneto-phonon effect involving the $E_{2g}$ optical phonon and $K$-point inter Landau bands electronic excitations with $Δ|n|=\pm1$ is revealed and analyzed within a model taking into account the full $k_z$ dispersion. These polarization resolved results are explained in the frame of the Slonczewski-Weiss-McClure (SWM) model which directly allows to quantify the electron-hole asymmetry.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
P. Kossacki, C. Faugeras, M. Kühne, M. Orlita, A. A. L. Nicolet, J. M. Schneider, D. M. Basko, Y. I. Latyshev, M. Potemski. 2011-10-19. Electronic excitations and electron-phonon coupling in bulk graphite through Raman scattering in high magnetic fields. https://doi.org/10.1103/physrevb.84.235138
Cite the original work for its findings. Save a collection to share your selection of sources.