Published December 2021 | Version v1
Journal article

Electric and magnetic responses of two-dimensional Dirac electrons in organic conductor α-(BETS)2I3

  • 1. Professor Emeritus, Nagoya University, Graduate School of Science, Department of Physics, Nagoya, Aichi (Japan)
  • 2. Kumamoto University, Priority Organization for Innovation and Excellence, Kumamoto (Japan)

Description

Effect of spin-orbit coupling (SOC) on Dirac electrons in the organic conductor α-(BETS)2I3 [BETS = bis(ethylenedithio)tetraselenafulvalene] has been examined by calculating electric conductivity and spin magnetic susceptibility. A tight-binding (TB) model with real and imaginary transfer energies is derived using first-principles density-functional theory method. The conductivity without the SOC depends on both anisotropies of the velocity of the Dirac cone and the tiling of the cone. Such conductivity is suppressed by the SOC, which gives rise to the imaginary part of the transfer energy. Due to the SOC, we find at low temperatures that the reduction of the conductivity becomes large and that the anisotropy of the conductivity is reduced. A nearly constant conductivity at high temperatures is obtained by an electron-phonon (e-p) scattering. Further, the property of the Dirac cone is examined for the spin susceptibility, which is mainly determined by the density of states (DOS). The result is compared with the case of the organic conductor α-(BEDT-TTF)2I3 [BEDT-TTF = bis(ethylenedithio)tetrathiafulvalene], which provides the Dirac cone without the SOC. The relevance to experiments is discussed. (author)

Availability note (English)

Available from DOI: https://doi.org/10.7566/JPSJ.90.124707

Additional details

Identifiers

Publishing Information

Journal Title
Journal of the Physical Society of Japan (Online)
Journal Volume
90
Journal Issue
12
Journal Page Range
p. 124707.1-124707.10
ISSN
1347-4073

Optional Information

Notes
46 refs., 7 figs., 1 tab.