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Polarizing and reflective coatings based on half-wave layer pairs

机译:基于半波层对的偏光和反射涂层

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The majority of the layers of a multilayer optical coating typically have optical thicknesses equal to one quarter of the appropriate wavelength of radiation. Replacing this constraint with the stipulation that a pair of adjacent layers should have a total optical thickness of one half of a wavelength introduces a significant new component of design flexibility while having a minimal impact upon the desired optical properties of the film. Taking a matrix approach, we derive a general expression for the reflectance of a periodic thin-film structure that is based on layers of two different materials of arbitrary thickness. This result is applied to highly reflective coatings at normal incidence and to off-normal polarizing coatings. Specific results involving HfO2/SiO2 films and TiO2/SiO2 films are displayed. We discuss how the thickness of the high-index layers may be reduced to increase damage thresholds. We also show a mirror design that is effective not only at lambda = 1.06 mu m but also at the frequency-doubled wavelength. (C) 1997 Optical Society of America
机译:多层光学涂层的大多数层通常具有等于适当辐射波长的四分之一的光学厚度。用一对相邻的层的总光学厚度应为波长的一半的规定来代替该约束,这引入了设计灵活性的重要的新组成部分,同时对薄膜的所需光学特性的影响最小。采用矩阵方法,我们得出了基于两种不同厚度的任意厚度的材料的周期性薄膜结构的反射率的一般表达式。该结果适用于法向入射的高反射涂层和非法向偏振涂层。显示了涉及HfO2 / SiO2膜和TiO2 / SiO2膜的具体结果。我们讨论了如何降低高折射率层的厚度以增加损伤阈值。我们还展示了一种反射镜设计,该设计不仅在λ= 1.06μm时有效,而且在倍频波长下也有效。 (C)1997年美国眼镜学会

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