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Universal relationship between the penetration depth and the normal-state conductivity in YBaCuO
The absolute values of the conductivity in the normal state $\sigma _{\rm n}$ and of the low-temperature penetration depths $\lambda (0)$ were measured for a number of different samples of the YBaCuO family. We found a striking correlation between $\sigma _{\rm n}$ and $\lambda ^{-2}\,$ regardless o...
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Published in: | Europhysics letters 1999-10, Vol.48 (1), p.73-78 |
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container_title | Europhysics letters |
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creator | Pimenov, A Loidl, A Schey, B Stritzker, B Jakob, G Adrian, H Pronin, A. V Goncharov, Yu. G |
description | The absolute values of the conductivity in the normal state $\sigma _{\rm n}$ and of the low-temperature penetration depths $\lambda (0)$ were measured for a number of different samples of the YBaCuO family. We found a striking correlation between $\sigma _{\rm n}$ and $\lambda ^{-2}\,$ regardless of doping, oxygen reduction or defects, thus providing a simple method to predict the superconducting penetration depth and to have an estimate of the sample quality by measuring the normal-state conductivity. |
doi_str_mv | 10.1209/epl/i1999-00116-1 |
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subjects | 74.25.-q 74.25.Fy 74.76.Bz |
title | Universal relationship between the penetration depth and the normal-state conductivity in YBaCuO |
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