Sekman Yusuf, Felde Nadja, Ghazaryan Lilit, Szeghalmi Adriana, Schröder Sven
Appl Opt. 2020 Feb 10;59(5):A143-A149. doi: 10.1364/AO.59.00A143.
Antireflective coatings are widely applied on transparent optical components to reduce reflections at surfaces. Nanoporous silica (NP ) thin films with tailored refractive index properties are used as single-layer antireflective coatings providing nearly zero reflectivity. In this work, light scattering properties of nanoporous silica single-layer antireflective coatings are investigated in order to determine their optical quality by means of total scattering and detailed roughness analysis. Scattering and roughness characterization of the samples coated with different film thicknesses were realized to distinguish the influences of nanopores and surface roughness on scattering losses in the visible (VIS) spectral range. No significant correlation of scattering losses with the film thickness is found, showing negligible influence of the nanopores to the overall scattering properties compared with the dominating effect of interface roughness. Moreover, the scattering losses from coated fused silica glass were observed as low as 20 ppm (0.002%). It is confirmed that NP single-layer antireflective coatings are suitable to be used in optics demanding extremely low scattering characteristics.
抗反射涂层广泛应用于透明光学元件上,以减少表面反射。具有定制折射率特性的纳米多孔二氧化硅(NP)薄膜被用作单层抗反射涂层,可提供近乎零反射率。在这项工作中,对纳米多孔二氧化硅单层抗反射涂层的光散射特性进行了研究,以便通过总散射和详细粗糙度分析来确定其光学质量。通过对不同膜厚的样品进行散射和粗糙度表征,以区分纳米孔和表面粗糙度对可见(VIS)光谱范围内散射损耗的影响。未发现散射损耗与膜厚有显著相关性,表明与界面粗糙度的主导作用相比,纳米孔对整体散射特性的影响可忽略不计。此外,观察到涂覆的熔融石英玻璃的散射损耗低至20 ppm(0.002%)。证实了NP单层抗反射涂层适用于要求极低散射特性的光学领域。