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An invaluable resource for industrial science and engineering newcomers to sputter deposition technology in thin film production applications, this book is rich in coverage of both historical developments and the newest experimental and technological information about ceramic thin films, a key technology for nano-materials in high-speed information applications and large-area functional coating such as automotive or decorative painting of plastic parts, among other topics. In seven concise chapters, the book thoroughly reviews basic thin film technology and deposition processes, sputtering pro
Cathode sputtering (Plating process) --- Thin films. --- Thin films
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Photovoltaic cells --- Thin films. --- Solar cells. --- Copper indium selenide. --- Materials.
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Photovoltaic power generation --- Solar cells --- Thin films. --- Technological innovations.
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Solar cells --- Thin films --- Photovoltaic cells. --- Crystal growth. --- Research. --- Materials.
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Photovoltaic cells --- Solar cells --- Manufacturing processes. --- Thin films. --- Materials.
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Crystal growth --- Nitrides --- Silicon-carbide thin films --- Silicon carbide
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Reflection high-energy electron diffraction (RHEED) is the analytical tool of choice for characterizing thin films during growth by molecular beam epitaxy, since it is very sensitive to surface structure and morphology. This 2004 book serves as an introduction to RHEED for beginners and describes detailed experimental and theoretical treatments for experts, explaining how to analyze RHEED patterns. For beginners the principles of electron diffraction are explained and many examples of the interpretation of RHEED patterns are described. The second part of the book contains detailed descriptions of RHEED theory. The third part applies RHEED to the determination of surface structures, gives detailed descriptions of the effects of disorder, and critically reviews the mechanisms contributing to RHEED intensity oscillations. This unified and coherent account will appeal to both graduate students and researchers in the study of molecular beam epitaxial growth.
Reflection high energy electron diffraction. --- Thin films --- Surfaces --- Analysis.
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