English

Low-temperature infrared dielectric function of hyperbolic $\alpha$-quartz

Materials Science 2019-04-25 v2 Optics

Abstract

We report the infrared dielectric properties of α\alpha-quartz in the temperature range from 1.5 K1.5\ \mathrm{K} to 200 K200\ \mathrm{K}. Using an infrared free-electron laser, far-infrared reflectivity spectra of a single crystal yy-cut were acquired along both principal axes, under two different incidence angles, in S- and P-polarization. These experimental data have been fitted globally for each temperature with a multioscillator model, allowing to extract frequencies and damping rates of the ordinary and extraordinary, transverse and longitudinal optic phonon modes, and hence the temperature-dependent dispersion of the infrared dielectric function. The results are in line with previous high-temperature studies, allowing for a parametrized description of all temperature-dependent phonon parameters and the resulting dielectric function from 1.5 K1.5\ \mathrm{K} up to the α\alpha-β\beta-phase transition temperature, TC=846 KT_C = 846\ \mathrm{K}. Using these data, we predict remarkably high quality factors for polaritons in α\alpha-quartz's hyperbolic spectral region at low temperatures.

Keywords

Cite

@article{arxiv.1902.03072,
  title  = {Low-temperature infrared dielectric function of hyperbolic $\alpha$-quartz},
  author = {Christopher J. Winta and Martin Wolf and Alexander Paarmann},
  journal= {arXiv preprint arXiv:1902.03072},
  year   = {2019}
}
R2 v1 2026-06-23T07:35:39.737Z