Temperature Dependence of Charge Transport in an Undoped Weyl Semimetal – Y<sub>2</sub>Ir<sub>2</sub>O<sub>7</sub>
ORAL
Abstract
An undoped Weyl Semimetal (WSM) is predicted to exhibit resistivity varying with temperature as ρ α T-4 in the presence of a random Coulomb potential screened by thermally generated charge carriers. Here we show that, in hydrothermally grown polycrystalline samples of the WSM Y2Ir2O7, ρ = ρ0T-4 over four orders of magnitude in ρ. The prefactor, ρ0, agrees with theoretical estimates within the random potential model using reasonable materials parameters. The model works well beyond its range of applicability, extending into the high-resistivity region where the Ioffe-Regel parameter, kT l « 2π. The importance of strong electron correlations suggests this is behavior characteristic of a "bad-WSM".
*This work was supported by NSF-DMR 1534741 (P.G.L., A.P.R.), NSF DGE-1339067 (J.T.), and NSF-DMR 1534818 (T.S., L.D.).
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Presenters
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Patrick LaBarre
- University of California, Santa Cruz