arXiv · 2409.07393
Plasmon-Phonon Hybridization in Doped Semiconductors from First Principles
Abstract
Although plasmons and phonons are the collective excitations that govern the low-energy physics of doped semiconductors, their nonadiabatic hybridization and mutual screening have not been studied from first principles. We achieve this goal by transforming the Dyson equation to the frequency-independent dynamical matrix of an equivalent damped oscillator. Calculations on doped GaAs and TiO2 agree well with available Raman data and await immediate experimental confirmation from infrared, neutron, electron-energy-loss, and angle-resolved photoemission spectroscopies.
Explore related subjects
Keep this discovery
Jae-Mo Lihm, Cheol-Hwan Park. 2024-09-11. Plasmon-Phonon Hybridization in Doped Semiconductors from First Principles. https://doi.org/10.1103/physrevlett.133.116402
Cite the original work for its findings. Save a collection to share your selection of sources.