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Singular angular magnetoresistance and sharp resonant features in a high-mobility metal with open orbits, ReO3

Published 1 Jul 2021 in cond-mat.mtrl-sci | (2107.00742v1)

Abstract: We report high-resolution angular magnetoresistance (AMR) experiments performed on crystals of ReO<em>3<em>3 with high mobility (90,000 cm<sup>2<sup>2/Vs at 2 K) and extremely low residual resistivity (5-8 nΩ\Omegacm). The Fermi surface, comprised of intersecting cylinders, supports open orbits. The resistivity ρ</em>xx\rho</em>{xx} in a magnetic field BB = 9 T displays a singular pattern of behavior. With Ex^\bf E\parallel \hat{x} and B\bf B initially z^\parallel\bf\hat{z}, tilting B\bf B in the longitudinal kzk_z-kxk_x plane leads to a steep decrease in ρxx\rho_{xx} by a factor of 40. However, if B\bf B is tilted in the transverse kyk_y-kzk_z plane, ρxx\rho_{xx} increases steeply by a factor of 8. Using the Shockley tube integral approach, we show that, in ReO<em>3<em>3, the singular behavior results from the rapid conversion of closed to open orbits, resulting in opposite signs for AMR in orthogonal planes. The floor values of ρ</em>xx\rho</em>{xx} in both AMR scans are identified with specific sets of open and closed orbits. Also, the "completion angle" γc\gamma_c detected in the AMR is shown to be an intrinsic geometric feature that provides a new way to measure the Fermi radius kFk_F. However, additional sharp resonant features which appear at very small tilt angles in the longitudinal AMR scans are not explained by the tube integral approach.

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