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This unique book describes the basic physical principles of the oxide/semiconductor epitaxy and offers a view of the current state of the field. It shows how this technology enables large-scale integration of oxide electronic and photonic devices, and describes possible hybrid semiconductor/oxide systems. The book incorporates both theoretical and experimental advances to explore the heteroepitaxy of tuned functional oxides and semiconductors to identify material, device and characterization challenges, and to present the incredible potential in the realization of multifunctional devices and monolithic integration of materials and devices. This book also: · Discusses why semiconductor substrates are an excellent integration platform for making hybrid logic/sensor devices · Provides a brief introduction to the methods accessible to non-experts, before going into details of interest to the experts · Includes a detailed glossary that explains the specialized terminology and provides insight into the terminology and how it’s used.
Metal oxide semiconductors. --- Epitaxy. --- Oxide coating. --- Protective coatings --- Thin films --- Epitaxial growth --- Crystal growth --- Unipolar transistors --- Semiconductors --- Transistors --- Charge coupled devices --- Metal oxide semiconductors --- Epitaxy --- Oxide coating --- MOS (électronique) --- Épitaxie --- Couches minces --- Revêtements protecteurs --- Electronics. --- Optical materials. --- Electronics and Microelectronics, Instrumentation. --- Optical and Electronic Materials. --- Semiconductors. --- Optics --- Materials --- Electrical engineering --- Physical sciences --- Épitaxie. --- Couches minces. --- Revêtements protecteurs. --- Microelectronics. --- Electronic materials. --- Crystalline semiconductors --- Semi-conductors --- Semiconducting materials --- Semiconductor devices --- Crystals --- Electronics --- Solid state electronics --- Electronic materials --- Microminiature electronic equipment --- Microminiaturization (Electronics) --- Microtechnology --- Miniature electronic equipment --- MOS (électronique) --- Épitaxie. --- Revêtements protecteurs.
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Molecular beam epitaxy --- Silicon --- Epitaxie par jets moléculaires --- Silicium --- Bird Diseases --- -Molecular beam epitaxy --- Gallus domesticus --- Gallus gallus --- Cell-mediated immunity --- Cellular immunology --- Clonal selection theory --- Aves --- Avian fauna --- Avifauna --- Wild birds --- Amniotes --- Ornithology --- Molecular beam epitaxy. --- Birds --- Immunity, Cellular. --- -Cellular immunity --- Chickens --- #ABIB:aimm --- Group 14 elements --- Nonmetals --- Epitaxy --- Molecular beams --- Immune response --- Immunity --- Cellular Immune Response --- Cell-Mediated Immunity --- Cell Mediated Immunity --- Cell-Mediated Immunities --- Cellular Immune Responses --- Cellular Immunities --- Cellular Immunity --- Immune Response, Cellular --- Immune Responses, Cellular --- Immunities, Cell-Mediated --- Immunities, Cellular --- Immunity, Cell-Mediated --- Response, Cellular Immune --- Lymphokines --- T-Lymphocytes --- Interleukin-12 --- Poultry --- Eggs --- Vertebrates --- immunology. --- Immunology --- Production --- Cellular immunity. --- Silicon. --- Immunology. --- Immunity, Cellular --- immunology
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