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Second-harmonic phonon spectroscopy of $\alpha$-quartz

Materials Science 2018-03-22 v2

Abstract

We demonstrate midinfrared second-harmonic generation as a highly sensitive phonon spectroscopy technique that we exemplify using α\alpha-quartz (SiO2_2) as a model system. A midinfrared free-electron laser provides direct access to optical phonon resonances ranging from 350 cm1350\ \mathrm{cm}^{-1} to 1400 cm11400\ \mathrm{cm}^{-1}. While the extremely wide tunability and high peak fields of an free-electron laser promote nonlinear spectroscopic studies---complemented by simultaneous linear reflectivity measurements---azimuthal scans reveal crystallographic symmetry information of the sample. Additionally, temperature-dependent measurements show how damping rates increase, phonon modes shift spectrally and in certain cases disappear completely when approaching Tc=846 KT_c=846\ \mathrm{K} where quartz undergoes a structural phase transition from trigonal α\alpha-quartz to hexagonal β\beta-quartz, demonstrating the technique's potential for studies of phase transitions.

Keywords

Cite

@article{arxiv.1710.02097,
  title  = {Second-harmonic phonon spectroscopy of $\alpha$-quartz},
  author = {Christopher J. Winta and Sandy Gewinner and Wieland Schöllkopf and Martin Wolf and Alexander Paarmann},
  journal= {arXiv preprint arXiv:1710.02097},
  year   = {2018}
}
R2 v1 2026-06-22T22:04:52.744Z