arXiv · cond-mat/0303591
Upper critical field $H_{c2}$ calculations for the high critical temperature superconductors considering inhomogeneities
Abstract
We perform calculations to obtain the $H_{c2}$ curve of high temperature superconductors (HTSC). We consider explicitly the fact that the HTSC possess intrinsic inhomogeneities by taking into account a non uniform charge density $ρ(r)$. The transition to a coherent superconducting phase at a critical temperature $T_c$ corresponds to a percolation threshold among different superconducting regions, each one characterized by a given $T_c(ρ(r))$. Within this model we calculate the upper critical field $H_{c2}$ by means of an average linearized Ginzburg-Landau (GL) equation to take into account the distribution of local superconducting temperatures $T_c(ρ(r))$. This approach explains some of the anomalies associated with $H_{c2}$ and why several properties like the Meissner and Nernst effects are detected at temperatures much higher than $T_c$.
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E. S. Caixeiro, J. L. González, E. V. L. de Mello. 2004-02-03. Upper critical field $H_{c2}$ calculations for the high critical temperature superconductors considering inhomogeneities. https://doi.org/10.1103/physrevb.69.024521
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