English

Dichotomy in the $T$-linear resistivity in hole-doped cuprates

Superconductivity 2009-12-11 v1 Strongly Correlated Electrons

Abstract

From analysis of the in-plane resistivity ρab(T)\rho_{ab}(T) of La2x_{2-x}Srx_xCuO4_4, we show that normal state transport in overdoped cuprates can be delineated into two regimes in which the electrical resistivity varies approximately linearly with temperature. In the low temperature limit, the TT-linear resistivity extends over a very wide doping range, in marked contrast to expectations from conventional quantum critical scenarios. The coefficient of this TT-linear resistivity scales with the superconducting transition temperature TcT_c, implying that the interaction causing this anomalous scattering is also associated with the superconducting pairing mechanism. At high temperatures, the coefficient of the TT-linear resistivity is essentially doping independent beyond a critical doping pcritp_{\rm crit} = 0.19 at which the ratio of the two coefficients is maximal. Taking our cue from earlier thermodynamic and photoemission measurements, we conclude that the opening of the normal state pseudogap at pcritp_{\rm crit} is driven by the loss of coherence of anti-nodal quasiparticles at low temperatures.

Keywords

Cite

@article{arxiv.0912.2001,
  title  = {Dichotomy in the $T$-linear resistivity in hole-doped cuprates},
  author = {N. E. Hussey and R. A. Cooper and Xiaofeng Xu and Y. Wang and B. Vignolle and C. Proust},
  journal= {arXiv preprint arXiv:0912.2001},
  year   = {2009}
}

Comments

18 pages, 4 figures, to appear in Special Theme Issue of Phil. Trans. Roy. Soc. A