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- W2561488828 abstract "We study the electrical conductivity in a nodal-line semimetal with charged impurities. The screening of the Coulomb potential in this system is qualitatively different from what is found in conventional metals or semiconductors, with the screened potential $ensuremath{phi}$ decaying as $ensuremath{phi}ensuremath{propto}1/{r}^{2}$ over a wide interval of distances $r$. This unusual screening gives rise to a rich variety of conduction regimes as a function of temperature, doping level, and impurity concentration. In particular, nodal-line semimetals exhibit a diverging mobility $ensuremath{propto}1/|ensuremath{mu}|$ in the limit of vanishing chemical potential $ensuremath{mu}$, a linearly increasing dependence of the conductivity on temperature, $ensuremath{sigma}ensuremath{propto}T$, and a large weak-localization correction with a strongly anisotropic dependence on magnetic field." @default.
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- W2561488828 date "2017-10-11" @default.
- W2561488828 modified "2023-10-16" @default.
- W2561488828 title "Electron transport in nodal-line semimetals" @default.
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- W2561488828 doi "https://doi.org/10.1103/physrevb.96.161105" @default.
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