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- Optical thin films and coatings
- Optical Thin Films and Coatings
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In this issue of Coating Materials News we review some of the basic theory behind optical coatings. Methods for determining the optical properties of thin films are also discussed. The third topic is a short discussion of the use of rare earth materials in color display, LED lighting, and X-ray imaging applications. We begin the new year with a review of the many applications and benefits made possible by thin-film coatings. This issue discusses IR coating designs and applications as well as sputtering deposition yield and advanced window glass coatings.
Optical thin films and coatings
A thin film is a layer of material ranging from fractions of a nanometer monolayer to several micrometers in thickness. The controlled synthesis of materials as thin films a process referred to as deposition is a fundamental step in many applications. A familiar example is the household mirror , which typically has a thin metal coating on the back of a sheet of glass to form a reflective interface. The process of silvering was once commonly used to produce mirrors, while more recently the metal layer is deposited using techniques such as sputtering. Advances in thin film deposition techniques during the 20th century have enabled a wide range of technological breakthroughs in areas such as magnetic recording media , electronic semiconductor devices , Integrated passive devices , LEDs , optical coatings such as antireflective coatings , hard coatings on cutting tools, and for both energy generation e. It is also being applied to pharmaceuticals, via thin-film drug delivery. A stack of thin films is called a multilayer.
Part 1: Design and manufacturing of optical thin films and coatings 1. Recent Developments in deposition techniques for optical thin films and coatings 2. Design of complex optical coatings 3. Optical Monitoring strategies for optical coating manufacturing 4. Production strategies for high-precision optical coatings. Part 2: Unconventional features of optical thin films and coatings 5.
Optical Thin Films and Coatings
Thin films have a great impact on the modern era of technology. Thin films are considered as backbone for advanced applications in the various fields such as optical devices, environmental applications, telecommunications devices, energy storage devices, and so on. The crucial issue for all applications of thin films depends on their morphology and the stability. The morphology of the thin films strongly hinges on deposition techniques. Thin films can be deposited by the physical and chemical routes. In this chapter, we discuss some advance techniques and principles of thin-film depositions. Nowadays, most of the technologies are used for minimizing the materials into nano-size as well as nano-thickness leading to the emergence of new and unique behaviors of such materials in optical, electrical, optoelectronic, dielectric applications, and so on.
Optical coatings, including mirrors, anti-reflection coatings, beam splitters, and filters, are an integral part of most modern optical systems. Optical thin films and coatings provides an overview of thin film materials, the properties, design and manufacture of optical coatings and their use across a variety of application areas. Part one explores the design and manufacture of optical coatings. Part two highlights unconventional features of optical thin films including scattering properties of random structures in thin films, optical properties of thin film materials at short wavelengths, thermal properties and colour effects. Part three focusses on novel materials for optical thin films and coatings and includes chapters on organic optical coatings, surface multiplasmonics and optical thin films containing quantum dots. Finally, applications of optical coatings, including laser components, solar cells, displays and lighting, and architectural and automotive glass, are reviewed in part four.
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Springer Handbook of Lasers and Optics pp Cite as. Within the scientific conception of the modern world, thin film optical coatings can be interpreted as one-dimensional photonic crystals. The major function of these photonic structures is to adapt the properties of an optical surface to the needs of specific applications. The latest progress in ophthalmic coatings even includes the integration of self-cleaning, photoactive or anti-fogging functions in antireflective coatings on glass.
In science as well as in industry, the impetus of research on bio-based polymers has recently expanded into new terrains. The need to replace fossil-based materials with sustainable and renewable sources is one of the main drivers for the emergence and the development of new and environmentally friendly The need to replace fossil-based materials with sustainable and renewable sources is one of the main drivers for the emergence and the development of new and environmentally friendly materials.
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