English

Linear-in-frequency optical conductivity in GdPtBi due to transitions near the triple points

Mesoscale and Nanoscale Physics 2018-10-29 v2 Materials Science Strongly Correlated Electrons

Abstract

The complex optical conductivity of the half-Heusler compound GdPtBi is measured in a frequency range from 20 to 22 000 cm1^{-1} (2.5 meV - 2.73 eV) at temperatures down to 10 K in zero magnetic field. We find the real part of the conductivity, σ1(ω)\sigma_{1}(\omega), to be almost perfectly linear in frequency over a broad range from 50 to 800 cm1^{-1} (\sim 6 - 100 meV) for T50T \leq 50 K. This linearity strongly suggests the presence of three-dimensional linear electronic bands with band crossings (nodes) near the chemical potential. Band-structure calculations show the presence of triple points, where one doubly degenerate and one nondegenerate band cross each other in close vicinity of the chemical potential. From a comparison of our data with the optical conductivity computed from the band structure, we conclude that the observed nearly linear σ1(ω)\sigma_{1}(\omega) originates as a cumulative effect from all the transitions near the triple points.

Keywords

Cite

@article{arxiv.1803.00840,
  title  = {Linear-in-frequency optical conductivity in GdPtBi due to transitions near the triple points},
  author = {F. Hütt and A. Yaresko and M. B. Schilling and C. Shekhar and C. Felser and M. Dressel and A. V. Pronin},
  journal= {arXiv preprint arXiv:1803.00840},
  year   = {2018}
}

Comments

5+ pages, 5 figures, band-structure and optical-conductivity calculations added