<i>Ab-initio</i> thermal properties of high-pressure silica

ORAL

Abstract

We investigate the thermal properties of silica as it undergoes a pressure-driven structural phase transition with first principles calculations. We compute the lattice thermal conductivity of SiO2 for a wide range of temperatures and pressures by solving the Boltzmann transport equation iteratively. We find that, at low temperatures, silica displays a large peak in the in-plane thermal conductivity and a highly anisotropic behavior close to the phase boundary. We further trace back the origin of this behavior by analyzing the phonon contributions to the conductivity.

*We acknowledge financial support by the Spanish Ministerio de Economía, Industria y Competitividad (MINECO) under grant FEDER-MAT2013-40581-P and the Severo Ochoa Centres of Excellence Program under grant SEV-2015-0496, and by the Generalitat de Catalunya under grant no. 2014 SGR 301. We also acknowledge

Presenters

  • Hugo Aramberri

    • Institut de Ciencia de Materials de Barcelona (ICMAB-CSIC)

Authors

  • Hugo Aramberri

    • Institut de Ciencia de Materials de Barcelona (ICMAB-CSIC)
  • Riccardo Rurali

    • Institut de Ciencia de Materials de Barcelona (ICMAB-CSIC)
  • Jorge Iniguez

    • Luxembourg Institute of Science and Technology