Dobrowolski J A, Sullivan B T
Appl Opt. 1996 Sep 1;35(25):4993-7. doi: 10.1364/AO.35.004993.
It is possible to design normal-incidence antireflection coatings that reduce the reflectance of any substrate with a refractive index that lies in the range of 1.48 to 1.75. The performance of such coatings depends on the width of the spectral region over which the reflectance is to be suppressed, on the coating materials used for their construction, and on the overall optical thickness of the layer system. For example, the calculated average spectral reflectance of a set of six different substrates with refractive indices 1.48, 1.55, 1.60, 1.65, 1.70, and 1.75, when coated with a 0.56-μm-thick, eight-layer antireflection coating designed for the 0.40-0.80-μm spectral region, was 0.34%. This is higher than the average reflectance that is attainable with a conventional antireflection coating of similar optical thicknesses designed for a particular refractive index. However, it is an acceptable value for most applications. With the universal type of antireflection coating described, it is thus possible to coat a number of different refractive-index substrates in one deposition run, and this can result in considerable cost and time savings.
可以设计正入射减反射涂层,以降低折射率在1.48至1.75范围内的任何衬底的反射率。此类涂层的性能取决于要抑制反射率的光谱区域的宽度、用于构建涂层的材料以及层系统的整体光学厚度。例如,一组六种不同衬底,其折射率分别为1.48、1.55、1.60、1.65、1.70和1.75,当涂覆一层为0.40 - 0.80μm光谱区域设计的0.56μm厚的八层减反射涂层时,计算得到的平均光谱反射率为0.34%。这高于为特定折射率设计的具有相似光学厚度的传统减反射涂层所能达到的平均反射率。然而,对于大多数应用来说,这是一个可接受的值。因此,使用所述的通用型减反射涂层,可以在一次沉积过程中涂覆多种不同折射率的衬底,这可以节省大量成本和时间。