English

Lattice dielectric properties of rutile $\mathrm{TiO}_2$: First-principles anharmonic self-consistent phonon study

Materials Science 2023-03-24 v1

Abstract

We calculate the lattice dielectric function of strongly anharmonic rutile TiO2\mathrm{TiO}_2 from ab initio anharmonic lattice dynamics methods. Since an accurate calculation of the Γ\Gamma point phonons is essential for determining optical properties, we employ the modified self-consistent approach, including third-order anharmonicity as well as fourth-order anharmonicity. The resulting optical phonon frequencies and linewidths at the Γ\Gamma point much better agree with experimental measurements than those from a perturbative approach. We show that the four-phonon scattering process contributes as much as the third-order anharmonic term to phonon linewidths. Furthermore, incorporating the frequency dependence of phonon linewidth reveals that experimentally known but unidentified peaks of the dielectric function are due to two-phonon process. This work emphasizes the importance of a self-consistent approach in predicting the optical properties of highly anharmonic materials.

Keywords

Cite

@article{arxiv.2210.15873,
  title  = {Lattice dielectric properties of rutile $\mathrm{TiO}_2$: First-principles anharmonic self-consistent phonon study},
  author = {Tomohito Amano and Tamio Yamazaki and Ryosuke Akashi and Terumasa Tadano and Shinji Tsuneyuki},
  journal= {arXiv preprint arXiv:2210.15873},
  year   = {2023}
}

Comments

12 pages, 10 figures