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Science and Technology of Thin Film Superconductors


Science and Technology of Thin Film Superconductors
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Lieferzeit: 21 Werktage

  • 10418375


Beschreibung

'Laser Deposition.- Superconducting Properties of Ultra-Thin Films of Y1Ba2Cu3O7-x.- Plasma-Assisted Laser Deposition of Superconducting Thin Films - A Basic Study.- Formation of Bi(Pb)-Sr-Ca-Cu-O Thin Films at 500°C by a Successive Deposition Method Using Excimer Laser.- The Effect of Annealing Conditions on Laser Deposited Superconducting Bi-Sr-Ca-Cu-O Thin Films.- Pulsed Laser Evaporation of Tl-Ba-Ca-Cu-O Films.- Preparation of High Temperature Superconductor Thin Films on Si Based Substrates by Excimer Laser Ablation, Film-Substrate Interactions, and Plasma Processing Effects on Crystallinity.- Laser Ablation Analysis of 1-2-3 Material.- Microstructural Investigation of YBa2Cu3O7-? Films Deposited by Laser Ablation from BaF2/Y2O3/CuO Targets.- Evaporation.- Preparation of Thin and Thick Film Superconductors in the Tl-Ca-Ba-Cu-O System.- In-Situ Growth of High Tc Thin Films.- High Tc Thin Film Research at NRL.- Properties of In-Situ Superconducting Y1Ba2Cu3O7-x Films by Molecular Beam Epitaxy with an Activated Oxygen Source.- Properties of Y-Ba-Cu-O Thin Films Grown In-Situ at Low Temperatures by Co-Evaporation and Plasma Oxidation.- YBa2Cu3O7 Thin Films Prepared by Evaporation from Yttrium, Copper and BaF2.- A Simple Technique to Prepare High Quality Superconducting Bi-Sr-Ca-Cu-Oxide Thin Films.- Preparation of Thin Films YBaCu(F)O with High Tc and Jc.- Sputtering.- Superconducting Phase Control for Rare-Earth-Free High-Tc Superconducting Thin Films.- As-Deposited Superconducting Y-Ba-Cu-O Thin Films on Si, SiO2, GaAs and Ni/Cu Substrates by High Pressure DC Sputtering Process.- Superconducting Properties of Magnetron Sputtered Bi-Sr-Ca-Cu-O and Tl-Ba-Ca-Cu-O Thin Films.- Film Fabrication of Artificial (BiO)/(SrCaCuO) Layered Structure.- Magnetron Sputtering of Thin Films of Tl-Ca-Ba-Cu-O.- Interaction of High Temperature Superconductors with Conductive Oxides.- Preparation and Characterizations of Bi-Pb-Sr-Ca-Cu-O Superconducting Thin Films.- Bi-Sr-Ca-Cu-O Compositional Modulation and Multilayered Film Synthesis by Plasma Controlled Sputtering.- High Tc Y-Ba-Cu-O Films Prepared by Multilayer, Reactive Sputtering from Separate Y, Cu, and Ba0.5Cu0.5 Targets.- Superconducting Tl-Ca-Ba-Cu-O Thin Films.- TL-Based Superconducting Films by Sputtering Using a Single Target.- Structure and Properties of Magnetron Sputtered Superconducting Y-Ba-Cu-O Films.- Effect of Annealing Conditions on the Structural and Superconducting Properties of Y-Ba-Cu-O Films.- Synthesis of Bi2Sr2CanCun+1Ox Films by Multilayer Deposition Technique.- Study of High Quality YBa2Cu3O7-y Thin Films.- Deposition of TlBaCaCuO Thin Films.- Metal Organic Chemical Vapor Deposition.- Metalorganic Chemical Vapor Deposition of Highly Textured Superconducting YBa2Cu3O7-x Films.- Metal-Organics for CVD of HTcS.- Organometallic Chemical Vapor Deposition of Superconducting YBaCuO Films and Post-Deposition Processing.- Thick Film.- Melt Growth of Bi-Sr-Ca-Cu-O Superconducting Sheets and Filaments.- Structural and Electrical Properties of Screen Printed and Spray Pyrolized High Tc Superconducting Films.- Spray-Deposited Superconducting Bi-Sr-Ca-Cu-O Thin Films.- Substrate Studies.- Microstructure and Critical Currents of YBa2Cu3O7-x Thin Films on SrTiO3 and a New Substrate: KTaO3.- Growth of High-Temperature Superconductor Thin Films on Lanthanum Aluminate Substrates.- Superconducting Films of YBCO on Bare Silicon.- Perovskite Related Substrates for Superconductor Films - Rare Earth Orthogallates.- Preparation of Superconducting Y-Ba-Cu-O Thin Films on Metallic Substrates.- Substrate-HTcS Thin Film Interaction Studies by (S)TEM.- Characterization of ZrO2 Buffer Layers for Sequentially Evaporated Y-Ba-Cu-O on Si and Al2O3 Substrates.- Characterization.- The Transport Behavior of the YBaCuO Superconducting Thin Films in the Magnetic Fields.- Magnetization, Flux Creep and Trans

Eigenschaften

Breite: 178
Höhe: 254
Seiten: 557
Sprachen: Englisch
Autor: R. D. McConnell, Stuart A. Wolf

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