This book is an introduction to recent progress in the development and application of glass with special photonics properties. Glass has a number of structural and practical advantages over crystalline materials, including excellent homogeneity, variety of form and size, and the potential for doping with a variety of dopant materials. Glasses with photonic properties have great potential and are expected to play a significant role in the next generation of multimedia systems. Fundamentals of glass materials are explained in the first chapter, and the book then proceeds to a discussion of gradient index glass, laser glasses, nonlinear optical glasses and magneto-optical glasses. Beginning with the basic theory, the book discusses actual problems, performance and applications of glasses. The book will be of value to graduate students, researchers and professional engineers working in materials science, chemistry and physics with an interest in photonics and glass with special properties.
This volume includes 28 contributions to the Toyoichi Tanaka Memorial Symposium on Gels which took place at Arcadia Ichigaya on September 10th-12th, 2008. The contributions from leading scientists cover a broad spectrum of topics concerning: Structure and Functional Properties of Gels - Swelling of Gels - Industrial and Biomedical Application. The symposium was held in the style of Faraday Discussions, which stimulated the active discussion. After the symposium, each manuscript was rewritten based on the discussion and the critical review. Since the research on gels is becoming more and more important both for academia and industry, this book will be an essential source of information.
Glasses with photonic properties have great potential and are expected to play a significant role in the next generation of multimedia systems. This book is an excellent introduction to recent progress in the development and application of glass with special photonics properties. The authors, two eminent Japanese scientists, thoroughly explain the fundamentals of glass materials in the first chapter, and then proceed to discuss gradient index glass, laser glasses, nonlinear optical glasses, and magneto-optical glasses. Besides in-depth treatment of basic theory, Yamane and Asahara describe actual problems, performance, and applications of glasses. Their work will be of value to graduate students, researchers, and professional engineers in materials science, chemistry, and physics interested in photonics and glass with special properties.
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