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- W2016820136 abstract "Within a low-field limit, the magnetic critical current density ( J c ) is found to have dropped drastically in case of thinner Y–Ba–Cu–O films ( ≤20 µm), deposited electrophoretically on silver substrates. In this low-field limit, the current loops scale the entire sample volume consisting of grain-grain-boundary networks. Due to the presence of uniformly distributed silver at the grain boundaries within the entire network (in case of these thinner films), the pinning potential ( U 0 ) of the grain boundary Josephson vortices is small as it depends on random variation in Josephson coupling energy ( E J ) of the grain boundaries. In case of thicker films, of course, U 0 can be high as no silver penetration is possible up to the top layers and hence, U 0 varies as ∼ d 0.4 ( d =film thickness) and ranges from 45 to 135 meV over a thickness regime of 3–65 µm. Consequently, the magnetic J c too, follows an anomalous trend of variation with film thickness." @default.
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- W2016820136 date "1997-02-01" @default.
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- W2016820136 title "Role of Superconductor-Normal Metal-Superconductor Proximity Junctions in Governing the Intergranular Flux Pinning in Electrophoretically Deposited Y–Ba–Cu–O Films" @default.
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