English

Quantum lattice dynamics and their importance in ternary superhydride clathrates

Materials Science 2023-10-18 v3 Superconductivity

Abstract

The quantum nature of the hydrogen lattice in superconducting hydrides can have crucial effects on the material's properties. Taking a detailed look at the dynamic stability of the recently predicted BaSiH8_8 phase, we find that the inclusion of anharmonic quantum ionic effects leads to an increase in the critical dynamical pressure to 20GPa20\,\text{GPa} as compared to 5GPa5\,\text{GPa} within the harmonic approximation. We identify the change in the crystal structure due to quantum ionic effects to be the main driving force for this increase and demonstrate that this can already be understood at the harmonic level by considering zero-point energy corrections to the total electronic energy. In fact, the previously determined critical pressure of kinetic stability pkin=30GPap_\text{kin} = 30\,\text{GPa} still poses a stricter bound for the synthesizability of BaSiH8_8 and similar hydride materials than the dynamical stability and therefore constitutes a more rigorous and accurate estimate for the experimental realizability of these structures.

Keywords

Cite

@article{arxiv.2212.09789,
  title  = {Quantum lattice dynamics and their importance in ternary superhydride clathrates},
  author = {Roman Lucrezi and Eva Kogler and Simone Di Cataldo and Markus Aichhorn and Lilia Boeri and Christoph Heil},
  journal= {arXiv preprint arXiv:2212.09789},
  year   = {2023}
}

Comments

10 pages, 5 figures. Revised manuscript with minor changes. Supplemental Material available on the journal website (open access)