arXiv · 2001.01327
Disparate exciton-phonon couplings for zone center and boundary phonons in solid-state graphite
Abstract
The exciton-phonon coupling in highly oriented pyrolytic graphite is studied using resonant inelastic X-ray scattering (RIXS) spectroscopy. With ~ 70 meV energy resolution, multiple low energy excitations associated with coupling to phonons can be clearly resolved in RIXS spectra. Using resonance dependence and the closed form for RIXS cross-section without considering the intermediate state mixing of phonon modes, the dimensionless coupling constant g is determined to be 5 and 0.4, corresponding to the coupling strength of 0.42 eV +/- 40 meV and 0.21 eV +/- 30 meV, for zone center and boundary phonons respectively. The reduced g value for zone-boundary phonon may be related to its double resonance nature.
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Xuefei Feng, Shawn Sallis, Yu-Cheng Shao, Ruimin Qiao, Yi-Sheng Liu, Li Cheng Kao, Anton Tremsin, Zahid Hussain, Wanli Yang, Jinghua Guo, Yi-De Chuang. 2020-01-05. Disparate exciton-phonon couplings for zone center and boundary phonons in solid-state graphite. https://doi.org/10.1103/physrevlett.125.116401
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