English

Antagonistic in-plane resistivity anisotropies from competing fluctuations in underdoped cuprates

Strongly Correlated Electrons 2015-09-04 v2 Superconductivity

Abstract

One of the prime manifestations of an anisotropic electronic state in underdoped cuprates is the in-plane resistivity anisotropy Δρ(ρaρb)/ρb\Delta\rho\equiv(\rho_{a}-\rho_{b})/\rho_{b}. Here we use a Boltzmann-equation approach to compute the contribution to Δρ\Delta\rho arising from scattering by anisotropic charge and spin fluctuations, which have been recently observed experimentally. While the anisotropy in the charge fluctuations is manifested in the correlation length, the anisotropy in the spin fluctuations emerges only in the structure factor. As a result, we find that spin fluctuations favor Δρ>0\Delta\rho>0, whereas charge fluctuations promote Δρ<0\Delta\rho<0, which are both consistent with the doping dependence of Δρ\Delta\rho observed in YBa2_{2}Cu3_{3}O7_{7}. We also discuss the role played by CuO chains in these materials, and propose transport experiments in strained HgBa2_{2}CuO4_{4} and Nd2_{2}CuO4_{4} to probe directly the different resistivity anisotropy regimes.

Keywords

Cite

@article{arxiv.1412.4745,
  title  = {Antagonistic in-plane resistivity anisotropies from competing fluctuations in underdoped cuprates},
  author = {Michael Schütt and Rafael M. Fernandes},
  journal= {arXiv preprint arXiv:1412.4745},
  year   = {2015}
}

Comments

5 pages + Supplementary Material