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Ceramic superconductors --- Crystallography --- Superconductivity
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MELTING --- CRYSTAL GROWTH --- CERAMIC SUPERCONDUCTORS --- LEVITATION
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High temperature superconductors. --- Superconductors. --- Dispersion. --- Hall effect. --- Ceramic superconductors. --- Ceramics, Superconducting --- Superconducting ceramic materials --- Superconducting ceramics --- Ceramic materials --- Superconductors --- Electric currents --- Electricity --- Galvanomagnetic effects --- Gyrators --- Optics --- Superconducting materials --- Superconductive devices --- Cryoelectronics --- Electronics --- Solid state electronics --- Materials at low temperatures --- Materials
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These Proceedings of a NATO-ARW (HTECH ARW 96 00 52) held at the International Center for Theoretical Physics, Trieste, Italy from Aug 5 till Aug 9, 1996 resulted from many discussions between various workers, concerning the need for a gathering of all (if possible) who were concerned about the subject of superconductivity fluctuations in High critical Temperature Superconductors (HTS). It appeared to many that the Skocpol-Tinkham work of 1975 had to be revitalized in view of the discovery of the new superconducting ceramics and the enormous amount of work having already taken place. The study of HTS is one of the most prominent research subject in solid state sciences. The understanding of the role of fluctuations is also thought to be necessary before technological applications since the fluctuations may destroy the superconducting state. The workshop discussions have touched upon (i) Superconducting fluctuations in the vicinity of the critical transition, (ii) Superconductivity fluctuations near the percolation transition, and (iii) Fluctuations of the vortex lattice at the lattice melting temperature. These topics served as initiators for a very great amount of discussions with many comments from the audience. More than forty "long lectures" and two "poster sessions" were held. Private discussions going unrecorded but obviously took place at many locations : lecture halls, staircases, cafetaria, bedrooms, bars, beach, . . .
Physics --- Physical Sciences & Mathematics --- Atomic Physics --- High temperature superconductors --- Fluctuations (Physics) --- Electricity & Magnetism --- Congresses --- High-temperature superconductors --- Condensed matter. --- Optics. --- Electrodynamics. --- Materials science. --- Statistical physics. --- Dynamical systems. --- Condensed Matter Physics. --- Classical Electrodynamics. --- Characterization and Evaluation of Materials. --- Complex Systems. --- Statistical Physics and Dynamical Systems. --- Dynamical systems --- Kinetics --- Mathematics --- Mechanics, Analytic --- Force and energy --- Mechanics --- Statics --- Mathematical statistics --- Material science --- Physical sciences --- Dynamics --- Light --- Condensed materials --- Condensed media --- Condensed phase --- Materials, Condensed --- Media, Condensed --- Phase, Condensed --- Liquids --- Matter --- Solids --- Statistical methods --- Ceramic superconductors --- Fluctuations
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Complex oxide materials, especially the ABO3-type perovskite materials, have been attracting growing scientific interest due to their unique electro-optical properties, leading to photorefractive effects that form the basis for such devices as holographic storage, optical data processing and phase conjugation. The optical and mechanical properties of non-metals are strongly affected by the defects and impurities that are unavoidable in any real material. Nanoscopically sized surface effects play an important role, especially in multi-layered ABO3 structures, which are good candidates for high capacity memory cells. The 51 papers presented here report the latest developments and new results and will greatly stimulate progress in high-tech technologies using perovskite materials.
Physics --- Physical Sciences & Mathematics --- Atomic Physics --- Ferroelectric crystals --- Perovskite --- Metallic oxides --- Electricity & Magnetism --- Defects --- Surfaces --- Condensed matter. --- Solid state physics. --- Spectroscopy. --- Microscopy. --- Optical materials. --- Electronic materials. --- Physical chemistry. --- Condensed Matter Physics. --- Solid State Physics. --- Spectroscopy and Microscopy. --- Optical and Electronic Materials. --- Physical Chemistry. --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry --- Chemistry --- Electronic materials --- Optics --- Materials --- Analysis, Microscopic --- Light microscopy --- Micrographic analysis --- Microscope and microscopy --- Microscopic analysis --- Optical microscopy --- Analysis, Spectrum --- Spectra --- Spectrochemical analysis --- Spectrochemistry --- Spectrometry --- Spectroscopy --- Chemistry, Analytic --- Interferometry --- Radiation --- Wave-motion, Theory of --- Absorption spectra --- Light --- Spectroscope --- Solids --- Condensed materials --- Condensed media --- Condensed phase --- Materials, Condensed --- Media, Condensed --- Phase, Condensed --- Liquids --- Matter --- Qualitative --- Analytical chemistry --- Materials. --- Ceramic superconductors --- Crystal defects --- Films --- Perovskite-type crystals --- Phase transition --- Surface
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