English

Electrical conduction mechanisms of metal / high-Tc superconductor (YBCO) interfaces

Materials Science 2020-02-19 v1

Abstract

Current-voltage characteristics of Au~/~YBa2_2Cu3_3O7δ_{7-\delta} interfaces (Au/YBCO), built on optimally-doped YBCO thin films, grown by pulsed laser deposition, were measured as a function of temperature in the 50 K to 270 K range, for two different resistance states. A non-trivial equivalent circuit model is proposed, which reveals the existence of a highly inhomogeneous scenario composed by two complex layers: one presenting both a non-linear Poole-Frenkel conduction as well as Variable Range Hopping localization effects (probably associated with YBa2_2Cu3_3O6_{6}) mixed with a minor metallic phase, while the other is also composed by a mixture of YBCO with different oxygen contents, where a metallic ohmic phase still percolates. A microscopic description of the effects produced by the resistance switching is given, showing the evolution of carrier traps, localization effects and dielectric behavior for each state. The dielectric behavior is interpreted in terms of a Maxwell-Wagner scenario.

Keywords

Cite

@article{arxiv.2001.07237,
  title  = {Electrical conduction mechanisms of metal / high-Tc superconductor (YBCO) interfaces},
  author = {L. F. Lanosa and H. Huhtinen and P. Paturi and C. Acha},
  journal= {arXiv preprint arXiv:2001.07237},
  year   = {2020}
}

Comments

21 pages, 10 figures