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      Proximity effect in granular superconductor-normal metal structures

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          Abstract

          We fabricated three-dimensional disordered Pb-Cu granular structures, with various metal compositions. The typical grain size of both metals is smaller than the superconductor and normal metal coherence lengths, thus satisfying the Cooper limit. The critical temperature of the samples was measured and compared with the critical temperature of bilayers. We show how the proximity effect theories, developed for bilayers, can be modified for random mixtures and we demonstrate that our experimental data fit well the de Gennes weak coupling limit theory in the Cooper limit. Our results indicate that, in granular structures, the Cooper limit can be satisfied over a wide range of concentrations.

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          Author and article information

          Journal
          11 January 2005
          Article
          10.1103/PhysRevB.71.064515
          cond-mat/0501254
          6d73a682-fba9-4f86-bb47-4c4324700917
          History
          Custom metadata
          15 pages, 4 figures
          cond-mat.supr-con

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