Polarization and driving force analysis of coherent optical shear phonons in graphite
arXiv:2412.16392 · doi:10.1088/1367-2630/adcfbc
Abstract
Coherent optical phonons in the degenerate inter-layer shear mode of graphite launched by femtosecond laser pulses were investigated using ultrafast electron diffraction. The collective atomic motion is shown to be polarized in a direction related to the linear polarization of the incoming laser pulse. Using a fit with a generic driven-oscillator model, the lifetime of the oscillator's driving force is determined to 37(30) fs. This is much shorter than the lifetime of excited carriers in graphite but similar to the time scale of the loss of the hot carrier's k-space anisotropy.
References in corpus (5)
- Universal dynamical conductance in graphite
- Coherent and incoherent electron-phonon coupling in graphite observed with radio-frequency compressed ultrafast electron diffraction
- Ultrafast Electron-Phonon Decoupling in Graphite
- Novel Electron-Phonon Relaxation Pathway in Graphite Revealed by Time-Resolved Raman Scattering and Angle-Resolved Photoemission Spectroscopy
- Electrical Control over Phonon Polarization in Strained Graphene