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Designing with very thin optical films

机译:使用非常薄的光学薄膜设计

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摘要

There is increasing interest in the design of films with thicknesses on the order of 10 nm and less for a variety of applications, such as nanoparticles, plasmonics, quantum dots, solar reflectors, black mirrors, etc. The indices of refraction (n and k) for the effective media of such coatings depend on the materials with which such "layers" interface and the specific process parameters used to produce those films. The structures may typically be nucleating island structures and may also be continuous films. A key factor is that the n and k values vary in thickness until some thickness is obtained, usually >20 nm. Heretofore, to the best of our knowledge, films have not taken into account thickness index variations during the design process. Software has now been developed where the index at a given thickness is computed at each iteration of the design optimization process. This allows more realistic design results utilizing the full representation of the behavior of the layers in question; the resulting coatings, when produced, are in better agreement with the designs. Including n and k versus wavelength and thickness in the design process is here referred to as double dispersion. (C) 2020 Optical Society of America
机译:对于各种应用,诸如纳米颗粒,血浆,量子点,太阳能反射器,黑色镜子等的厚度约为10nm且少于10nm且较少的薄膜的设计越来越感兴趣。折射率(n和k例如,这种涂层的有效介质取决于这种“层”界面的材料和用于产生这些薄膜的特定工艺参数。结构通常可以是核心岛结构,也可以是连续薄膜。关键因素是n和k值厚度变化,直到获得一些厚度,通常> 20nm。迄今为止,据我们所知,电影在设计过程中没有考虑厚度指数变化。现在已经开发了软件,其中在设计优化过程的每次迭代时计算给定厚度的索引。这允许利用所讨论的层的行为的全面表示更现实的设计结果;产生的涂层在生产时,与设计更好。包括N和K与设计过程中的波长和厚度在此称为双分散。 (c)2020美国光学学会

著录项

  • 来源
    《Applied optics》 |2020年第5期|共6页
  • 作者单位

    Willey Opt Consultants 13039 Cedar St Charlevoix MI 49720 USA;

    Ctr Phys Sci &

    Technol Opt Coating Lab Savanorki Ave 231 LT-02300 Vilnius Lithuania;

    FTG Software Associates POB 579 Princeton NJ 08542 USA;

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  • 正文语种 eng
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