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Titlebook: Science and Technology of Thin Film Superconductors; Robert D. McConnell,Stuart A. Wolf Book 1989 Springer Science+Business Media New York

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Plasma-Assisted Laser Deposition of Superconducting Thin Films — A Basic Studyt for the in-situ growth of superconducting films. These atomic beams could be modelled very well by a supersonic expansion mechanism. The atomic kinetic energies and their spatial dependence were measured and correlated to the thin film properties.
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Formation of Bi(Pb)-Sr-Ca-Cu-O Thin Films at 500°C by a Successive Deposition Method Using Excimer Lvice application, as-grown superconducting films prepared with low temperature process are needed. In the present study we have prepared thin films of Bi-Sr-Ca-Cu-O (BSCCO) and Bi(Pb)-Sr-Ca-Cu-O(BPSCCO) by a laser ablation method, and have succeeded in the formation of a crystallized as-grown thin f
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The Effect of Annealing Conditions on Laser Deposited Superconducting Bi-Sr-Ca-Cu-O Thin Filmsactice when compared to some other techniques . Thus far, however, additional processing is necessary in order to produce electrically continuous, superconducting films. Generally, heated substrates and/or post deposition annealing at elevated temperatures in the presence of oxygen are required. A w
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Preparation of High Temperature Superconductor Thin Films on Si Based Substrates by Excimer Laser Abline Si (111) substrates in partial pressures of oxygen. The substrate-film interaction, crystallization, composition, and microstructure of these films verst_s the deposition condition variables were studied including, substrate temperature, oxygen partial pressure, laser fluence and repetition rat
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In-Situ Growth of High TC Thin Filmsilms of YBa.Cu.O.. Both techniques, when used with heated substrates, are effective in the formation of the 123 phase in-situ during the film growth. With reactive evaporation only a cooldown anneal in a higher pressure oxygen ambient is necessary to obtain good superconducting properties. For the r
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