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Optical Coatings: Material Aspects in Theory and Practice: Springer Series in Surface Sciences, cartea 54

Autor Olaf Stenzel
en Limba Engleză Hardback – 14 mai 2014
Optical coatings, i.e. multilayer stacks composed from a certain number of thin individual layers, are an essential part of any optical system necessary to tailor the properties of the optical surfaces. Hereby, the performance of any optical coating is defined by a well-balanced interplay between the properties of the individual coating materials and the geometrical parameters (such as film thickness) which define their arrangement. In all scientific books dealing with the performance of optical coatings, the main focus is on optimizing the geometrical coating parameters, particularly the number of individual layers and their thickness. At the same time, much less attention is paid to another degree of freedom in coating design, namely the possibility to tailor optical material properties to an optimum relevant for the required specification. This book, on the contrary, concentrates on the material aside of the problem. After a comprehensive review of the basics of thin film theory, traditional optical coating material properties and their relation to the efficiency of coating design methods, emphasis is placed on novel results concerning the application of material mixtures and nanostructured coatings in optical coating theory and practice, including porous layers, dielectric mixtures as well as metal island films for different applications.
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Specificații

ISBN-13: 9783642540622
ISBN-10: 3642540627
Pagini: 404
Ilustrații: XXV, 378 p. 204 illus., 110 illus. in color.
Dimensiuni: 155 x 235 x 27 mm
Greutate: 0.7 kg
Ediția:2014
Editura: Springer Berlin, Heidelberg
Colecția Springer
Seria Springer Series in Surface Sciences

Locul publicării:Berlin, Heidelberg, Germany

Public țintă

Research

Cuprins

Basics.- Experimental determination of thin film optical constants.- Remarks on available coating materials.- Material aspects of coating design (incl. computational manufacturing).- High index oxide materials: Porous versus dense coatings.- Strongly porous low index materials.- Dielectric mixtures as coating materials (including applications in graded index coatings).- Mixtures with metal inclusions.- Examples on coatings with a periodic surface structure.- Concluding remarks.

Textul de pe ultima copertă

Optical coatings, i.e. multilayer stacks composed from a certain number of thin individual layers, are an essential part of any optical system necessary to tailor the properties of the optical surfaces. Hereby, the performance of any optical coating is defined by a well-balanced interplay between the properties of the individual coating materials and the geometrical parameters (such as film thickness) which define their arrangement. In all scientific books dealing with the performance of optical coatings, the main focus is on optimizing the geometrical coating parameters, particularly the number of individual layers and their thickness. At the same time, much less attention is paid to another degree of freedom in coating design, namely the possibility to tailor optical material properties to an optimum relevant for the required specification. This book, on the contrary, concentrates on the material aside of the problem.
After a comprehensive review of the basics of thin film theory, traditional optical coating material properties and their relation to the efficiency of coating design methods, emphasis is placed on novel results concerning the application of material mixtures and nanostructured coatings in optical coating theory and practice, including porous layers, dielectric mixtures as well as metal island films for different applications.

Caracteristici

Explains the basics of thin film theory Explains the strength and limits of material models for film design Presents nanostructuring and material mixing to offer new degrees of freedom in coating design Instructs to tailor optical material properties to an optimum relevant for the required specification Gives guidance to optimizing the geometrical coating parameters Includes supplementary material: sn.pub/extras