English

Universal Tc depression by irradiation defects in underdoped and overdoped cuprates

Strongly Correlated Electrons 2009-10-31 v1 Superconductivity

Abstract

We report on a study of the influence of defects introduced in the CuO2_{2} planes of cuprates in a wide range of hole dopings n. Tc_{c} and electrical resistivity ρ(T)\rho (T) measurements have been performed on electron irradiated YBa2_{2}Cu3_{3}O7δ_{7-\delta} and Tl2_{2}Ba2_{2}CuO6+x_{6+x} single crystals. A universal scaling between the decrease in Tc_{c} and \UNICODE[m]0x394ρ2D\UNICODE[m]0xd7n\UNICODE[m]{0x394}\rho_{2D}\UNICODE[m]{0xd7}n, where \UNICODE[m]0x394ρ2D\UNICODE[m]{0x394}\rho _{2D} is the increase of the 2D-resistance induced by the defects, is found for all the samples investigated here. This demonstrates that n is the relevant parameter to describe the transport properties all over the phase diagram, in contradiction with a recent suggestion of a change in the number of carriers from n to 1-n at the optimal doping. Moreover, the analysis of our data suggests that strong scattering persists on the overdoped side.

Keywords

Cite

@article{arxiv.cond-mat/9908405,
  title  = {Universal Tc depression by irradiation defects in underdoped and overdoped cuprates},
  author = {F. Rullier-Albenque and P. A. Vieillefond and H. Alloul and A. W. Tyler and P. Lejay and J. F. Marucco},
  journal= {arXiv preprint arXiv:cond-mat/9908405},
  year   = {2009}
}

Comments

11 pages in Latex/Revtex format, 3 postscript figures