Angle dependent magnetoresistance measurements in TlBaCuO and the need for anisotropic scattering
arXiv:0708.1666 · doi:10.1103/PhysRevB.76.104523
Abstract
The angle-dependent interlayer magnetoresistance of overdoped TlBaCuO has been measured in high magnetic fields up to 45 Tesla. A conventional Boltzmann transport analysis with no basal-plane anisotropy in the cyclotron frequency or transport lifetime is shown to be inadequate for explaining the data. We describe in detail how the analysis can be modified to incorporate in-plane anisotropy in these two key quantities and extract the degree of anisotropy for each by assuming a simple four-fold symmetry. While anisotropy in and other Fermi surface parameters may improve the fit, we demonstrate that the most important anisotropy is that in the transport lifetime, thus confirming its role in the physics of overdoped superconducting cuprates.
14 pages, 13 Figures
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Cited by in corpus (6)
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- Effects of a tilted magnetic field in a Dirac double layer
- Anisotropic scattering in angular-dependent magnetoresistance oscillations of quasi-2D and quasi-1D metals: beyond the relaxation-time approximation
- Possible quantum nematic in a colossal magnetoresistance material