Universal scaling relation in high-temperature superconductors
C. C. Homes, S. V. Dordevic, M. Strongin, D. A. Bonn, Ruixing Liang,, W. N. Hardy, Seiki Koymia, Yoichi Ando, G. Yu, X. Zhao, M. Greven, D. N., Basov, T. Timusk

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Abstract
Scaling laws express a systematic and universal simplicity among complex systems in nature. For example, such laws are of enormous significance in biology. Scaling relations are also important in the physical sciences. The seminal 1986 discovery of high transition-temperature (high-T_c) superconductivity in cuprate materials has sparked an intensive investigation of these and related complex oxides, yet the mechanism for superconductivity is still not agreed upon. In addition, no universal scaling law involving such fundamental properties as T_c and the superfluid density \rho_s, a quantity indicative of the number of charge carriers in the superconducting state, has been discovered. Here we demonstrate that the scaling relation \rho_s \propto \sigma_{dc} T_c, where the conductivity \sigma_{dc} characterizes the unidirectional, constant flow of electric charge carriers just above T_c,…
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