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Non-Fermi-liquid behavior in cubic phase BaRuO$_{3}$: A dynamical mean-field study

Strongly Correlated Electrons 2014-12-04 v1 Materials Science

Abstract

Motivated by the recently synthesized cubic phase BaRuO3_{3} under high pressure and high temperature, a thorough study has been conducted on its temperature-dependent electronic properties by using the state-of-the-art \textit{ab inito} computing framework of density functional theory combined with dynamical mean-field theory. At ambient condition the cubic phase BaRuO3_{3} should be a weakly correlated Hund's metal with local magnetic moment. The spin-spin correlation function and local magnetic susceptibility can be well described by the Curie-Weiss law over a wide temperature range. The calculated low-frequency self-energy functions of Ru-4d states apparently deviate from the behaviors predicted by Landau Fermi-liquid theory. Beyond that, the low-frequency optical conductivity can be fitted to a power-law σ(ω)ω0.98\Re\sigma(\omega) \sim \omega^{-0.98}, which further confirms the Non-Fermi-liquid metallic state.

Keywords

Cite

@article{arxiv.1206.4798,
  title  = {Non-Fermi-liquid behavior in cubic phase BaRuO$_{3}$: A dynamical mean-field study},
  author = {Li Huang and Bingyun Ao},
  journal= {arXiv preprint arXiv:1206.4798},
  year   = {2014}
}

Comments

6 pages, 4 figures

R2 v1 2026-06-21T21:23:09.567Z