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Design and plasma deposition of dispersion-corrected multiband rugate filters

机译:色散校正多波段褶状滤光片的设计和等离子体沉积

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Inverse Fourier transform method has been commonly used for designing complex inhomogeneous optical coatings. Since it assumes dispersion-free optical constants, introducing real optical materials induces shifts in the position of reflectance bands in multiband inhomogeneous minus (rugate) filters. We propose a simple method for considering optical dispersion in the synthesis of multiband rugate filter designs. Model filters designed with this method were fabricated on glass and polycarbonate substrates by plasma-enhanced chemical vapor deposition of silicon oxynitrides and SiO_(2)/TiO_(2) mixtures with precisely controlled composition gradients.
机译:傅立叶逆变换方法通常用于设计复杂的不均匀光学涂层。由于它假定无色散光学常数,因此引入真实的光学材料会引起多波段不均匀负(褶皱)滤光片中反射带位置的偏移。我们提出了一种在合成多频带褶状滤波器设计时考虑光学色散的简单方法。通过等离子增强化学气相沉积氧化硅和SiO_(2)/ TiO_(2)混合物并精确控制组成梯度,在玻璃和聚碳酸酯基板上制造了用这种方法设计的模型滤光片。

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