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  1. 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.

  2. This book offers up-to-date survey of the major optical characterization techniques for thin solid films and reviews relevant fundamentals

  3. Thin-film technology revolutionized modern life by enabling compact optoelectronic devices and smart coatings. Current applications include understanding the substrate conformation and crystal structure of thin films during synthesis processes and their correlation to physical and chemical properties, particularly to optical-related phenomena.

  4. 20 cze 2018 · This work reports that the electrical, optical, structural, and morphological properties of CuCrO2 thin films are significantly affected due to the variation in the annealing temperature.

  5. Thin-film and coating technologies, including physical vapor deposition (PVD), magnetron sputtering (MS), sol–gel technology (SLGL), pulsed laser deposition methods (PLD), plasma/ion beam deposition (PIBD), chemical vapor deposition (CVD).

  6. 26 sty 2023 · Finding materials with suitable optical characteristics (high LIDT and low absorption losses) for high-power laser coatings in the UV spectral range is a great challenge because such materials are limited.

  7. 19 paź 2021 · In this contribution, we report on our advancement in the field of optical thin-film coating fabrication, which enables a manufacturing process comparable to die assembly in electronics. We have combined a sacrificial-substrate approach with the production of miniaturized optical thin-film coatings by ion-beam sputtering.

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