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Titlebook: Optical Coatings; Material Aspects in Olaf Stenzel Book 2014 Springer-Verlag Berlin Heidelberg 2014 Coating Characterization.Models for Fi

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楼主: aspirant
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Optical Coatings978-3-642-54063-9Series ISSN 0931-5195 Series E-ISSN 2198-4743
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Basic Knowledge on Optical Constantsnd discussed. Emphasis is placed on amorphous coating materials. Consideration is given to the requirement of Kramers–Kronig-consistency of the dispersion behaviour. The basic optical properties of material mixtures are also introduced.
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Experimental Determination of Thin Film Optical Constantsstrates from ex situ transmission and reflection measurements are discussed in full detail. In situ transmission measurements and shift measurements complete the treatment. Examples include dielectric coatings, transparent conductive oxides, and metal coatings.
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Material Aspects in Coating Designnormal and oblique incidence spectral targets, and on general feasibility considerations by means of computational manufacturing runs for different available deposition process monitoring approaches. As a major example, the impact of optical constants and their reproducibility on the performance of a broadband antireflection coating is discussed.
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Oxide Coatings: Porous and Dense Filmsd. Practical examples focus on oxide coatings; comprehensive experimental material is presented for titanium dioxide, niobium pentoxide, tantalum pentoxide, zirconium dioxide, hafnium dioxide, aluminum oxide, and silicon dioxide films produced by means of different PVD techniques.
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Heterogeneous Coatings: General Remarkseneity and pursued spectral range. As an example, a subwavelength structured notch filter design procedure is elaborated by combining theoretical tools from gradient index broadband antireflection coating design with resonant grating waveguide theory.
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Dielectric Mixturesispersion, absorption edge position, and mechanical stress. Examples mainly focus on oxide and fluoride coatings, but with respect to mechanical stress, data are collected from broader classes of materials.
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Springer Series in Surface Scienceshttp://image.papertrans.cn/o/image/702522.jpg
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https://doi.org/10.1007/978-3-642-54063-9Coating Characterization; Models for Film Design; Nanostructured Coatings; Nanostructuring and Material
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