We present measurements of the field induced changes in the 47 GHz complex resistivity, Δρ~(H,T), in Tl2Ba2CaCu2O8+x (TBCCO) thin films with Tc≃ 105 K, prepared on CeO2 buffered sapphire substrates. At low fields (μ0H<10 mT) a very small irreversible feature is present, suggesting a little role of intergranular phenomena. Above that level Δρ~(H,T) exhibits a superlinear dependence with the field, as opposed to the expected (at high frequencies) quasilinear behaviour. We observe a crossover between predominantly imaginary to predominantly real (dissipative) response with increasing temperature and/or field. In addition, we find the clear scaling property Δρ~(H,T)=Δρ~[H/H∗(T)], where the scaling field H∗(T) maps closely the melting field measured in single crystals. We discuss our microwave results in terms of loss of flux lines rigidity.
@article{arxiv.cond-mat/0607552,
title = {Vortex state microwave resistivity in Tl-2212 thin films},
author = {N. Pompeo and S. Sarti and R. Marcon and H. Schneidewind and E. Silva},
journal= {arXiv preprint arXiv:cond-mat/0607552},
year = {2007}
}
Comments
8 pages, 3 figures, proceedings of 9th HTSHFF, accepted for publication on J. Supercond