arXiv · 0908.3498
Scaling analysis of the static and dynamic critical exponents in under, over, and optimally-doped Pr$_{2-x}$Ce$_x$CuO$_{4-y}$ films
Abstract
We report on current-voltage measurements of the zero-field normal-superconducting phase transition in thin films of Pr$_{2-x}$Ce$_x$CuO$_{4-y}$ as a function of doping. We find that the small size of the critical regime in these materials ($\approx 25$ mK) gives rise to mean-field behavior at the phase transition with a static exponent of $ν\approx 0.5$ for all dopings (in contrast to hole-doped $\mathrm{YBa_{2}Cu_{3}O_{7-δ}}$). We also find mean-field behavior in the dynamic exponent $z$. This indicates that Pr$_{2-x}$Ce$_x$CuO$_{4-y}$ behaves similarly to conventional superconductors in contrast to other cuprate superconductors. However, as the transition width in our samples decreases, the dynamic critical exponent approaches $z=1.5$, similar to the critical exponent found in hole-doped $\mathrm{YBa_{2}Cu_{3}O_{7-δ}}$.
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M. C. Sullivan, R. A. Isaacs, M. F. Salvaggio, J. Sousa, C. G. Stathis, J. B. Olson. 2010-03-11. Scaling analysis of the static and dynamic critical exponents in under, over, and optimally-doped Pr$_{2-x}$Ce$_x$CuO$_{4-y}$ films. https://doi.org/10.1103/physrevb.81.134502
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