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pioneering work describes the technology, developed over a 50-year period, to utilize chalcogenide glasses as infrared optical materials. Methods for;
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chalcogenide glass for lasers and amplifiers, the applications of chalcogenide glasses for infrared sensing, microstructured optical fibres for;
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Chalcogenide glass is made up of many elements from the Chalcogenide group. The glass is transparent to infrared light and is useful as;
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In the past 10 years, there have been many developments in the field of infrared transmitting fiber optics. This is highlighted by the many;
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This book provides a comprehensive overview of the chalcogenide glass science and various applications based on the glasses. It starts with;
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to chapter 13 on Supercontinuum Generation that reflect the use of chalcogenide fibers that extend Supercontinuum into the mid-infrared;
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includes comparative portraits of the chalcogenide and related materials including amorphous hydrogenated Si, oxide and halide glasses, and organic;
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includes comparative portraits of the chalcogenide and related materials including amorphous hydrogenated Si, oxide and halide glasses, and organic;
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essentials of radiometry and sources necessary for the quantitative understanding of infrared signatures and flux transfer, spectral atmospheric;
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Advanced textbook on inorganic glasses suitable for both undergraduates and researchers. * Engaging style to facilitate understanding;
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of infrared zoom optical systems to 41 systems. Other additions include a section for focal plane arrays and a new closing chapter specifically;
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includes UV, VUV and X-Ray lasers; visible, solid-state, semiconductor and infrared gas lasers; FEL and ultrashort laser pulses; visible and;
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of materials, glasses, rocks and minerals, catalysts, as well as peat in reaction processes. The aim of this book is to create a common ground for;
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This set of Field Guides distills the critical information on infrared principles, techniques, and systems for those working in or studying;
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, Molded Optics: Design and Manufacture presents detailed descriptions of molded plastic, glass, and infrared optics. Since an understanding of the;
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, Molded Optics: Design and Manufacture presents detailed descriptions of molded plastic, glass, and infrared optics. Since an understanding of the;
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covalent or tetrahedrally bonded amorphous semiconductors or chelcogenide glasses. * Developed from both a theoretical and experimental viewpoint;
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applications of these materials, offering insights into innovative applications for radiation shielding, energy harvesting, laser devices, and;
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applications of these materials, offering insights into innovative applications for radiation shielding, energy harvesting, laser devices, and;
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expand in almost every aspect of our lives. This Field Guide focuses on the most common infrared crystals and glasses used in these systems, from;
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Functional Glasses and Glass-Ceramics: Processing, Properties and Applications provides comprehensive coverage of the current state;
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, covering the fundamental concepts of photocatalytic reactions involving chalcogenides for a range of energy and environmental applications;
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that describes the behavior and properties of light?including visible, infrared, and ultraviolet?and the interaction of light with matter;
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This is the textbook and reference resource that instructors, students, and researchers in biomedical optics have been waiting for;
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applications for nonlinear optical signal processing. Multiple types of highly nonlinear fibers are considered, such as silica-based conventional;
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construction of instruments required for studying the various phenomena related to light. This discipline usually includes ultraviolet, visible and;
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performance for the detection of infrared photons in quantum cryptography, enable fundamental advances in quantum optics, and provide a direct route;
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