Studying angle-dependent magnetoresistance oscillations of cuprate superconductors in a model with antiferromagnetic reconstruction and magnetic breakdown
arXiv:1507.08635 · doi:10.1103/PhysRevB.92.195130
Abstract
We calculate angle-dependent magnetoresistance oscillations (AMRO) for interlayer transport of cuprate superconductors in the presence of () order. The order reconstructs the Fermi surface, creating magnetic breakdown junctions; we show how such magnetic breakdown effects can be incorporated into calculations of interlayer conductivity for this system. We successfully fit experimental data with our model, and these fits suggest a connection between () order and the anisotropic scattering observed in overdoped cuprates. This work paves the way for the use of AMRO as a tool to distinguish different kinds of ordered states.
12 pages, 9 figures
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Cited by in corpus (4)
- Fermi surface transformation at the pseudogap critical point of a cuprate superconductor
- Modelling the angle-dependent magnetoresistance oscillations of Fermi surfaces with hexagonal symmetry
- False spin zeros in the angular dependence of magnetic quantum oscillation in quasi-two-dimensional metals
- Angle-dependent magnetoresistance as a probe of Fermi surface warping in HgBaCuO