arXiv · cond-mat/0011176
Diamagnetic Response of Normal-Superconducting Double Layers
Abstract
The diamagnetism of a normal metal (N: Cu or Au), which is induced by the proximity effect of a superconductor (S: Nb), has been investigated for N-S double layers, which are formed by a thin-film deposition process. Detailed studies of samples, which have different electronic mean-free path \ell_N in N, suggest that \ell_N should be controlled by the impurity concentration rather than the mechanical imperfections in the lattice in order to clarify the \ell_N dependence of the proximity effect. Both the screening distance ρin N and the parameter νin ρ\propto T^-νincrease with an increase in \ell_N. This result can be understood on the assumption that the normal metal changes its behavior from the "dirty" limit (ξ_N>\ell_N) to the "clean" limit (ξ_N<\ell_N), where ξ_N is the coherence length in N.
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A. Sumiyama, T. Endo, Y. Nakagawa, Y. Oda. 2000-11-10. Diamagnetic Response of Normal-Superconducting Double Layers. https://doi.org/10.1143/jpsj.70.228
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