English

Soft phonon modes in the vicinity of the structural quantum critical point

Superconductivity 2017-04-28 v1 Strongly Correlated Electrons

Abstract

The quasi-skutterudite superconductors A3T4A_3T_4Sn13_{13} (AA=Sr, Ca; TT=Ir, Rh, Co) are highly tunable featuring a structural quantum critical point. We construct a temperature-lattice constant phase diagram for these isovalent compounds, establishing Ca3_{3}Rh4_4Sn13_{13} and Ca3_{3}Co4_4Sn13_{13} as members close to and far away from the structural quantum critical point, respectively. Deconvolution of the lattice specific heat and the electrical resistivity provide an approximate phonon density of states F(ω)F(\omega) and the electron-phonon transport coupling function αtr2F(ω)\alpha_{tr}^2F(\omega) for Ca3_{3}Rh4_4Sn13_{13} and Ca3_{3}Co4_4Sn13_{13}, enabling us to investigate the influence of the structural quantum critical point. Our results support the scenario of phonon softening close to the structural quantum critical point, and explain the enhancement of the coupling strength on approaching structural instability.

Keywords

Cite

@article{arxiv.1704.07966,
  title  = {Soft phonon modes in the vicinity of the structural quantum critical point},
  author = {Y. J. Hu and Y. W. Cheung and W. C. Yu and Masaki Imai and Hibiki Kanagawa and Joichi Murakawa and Kazuyoshi Yoshimura and Swee K. Goh},
  journal= {arXiv preprint arXiv:1704.07966},
  year   = {2017}
}

Comments

6 pages, 4 figures. Accepted by Phys. Rev. B