Shanbhogue H G, Nagendra C L, Annapurna M N, Kumar S A, Thutupalli G K
Appl Opt. 1997 Sep 1;36(25):6339-51. doi: 10.1364/ao.36.006339.
With a high-refractive-index mixed-oxide dielectric material of ZrTiO(4) and ZrO(2) [Substance H2 (Sub2) from E. Merck, Darmstadt, Germany], in combination with magnesium flouride (MgF(2)), design optimization and experimental production of low-loss antireflection (AR) coatings are carried out. Design-optimization studies that make use of these materials as constituents of a seven-layer coating system demonstrate that when the useful bandwidth of an AR coating is extended to cover a wider spectral range, the designs are in general found to have increased integrated reflection loss, higher ripple, and increased spectral instability. The experimental studies on Sub2 material show that the films have excellent optical performance over a wider process window, the advantage of which is demonstrated in the production of different AR coatings on a variety of glasses with refractive indices that range from 1.45 to 1.784 and different mechanical, thermal, and chemical properties. The manufacturing process of AR coatings shows a consistency better than 99% with respect to optical properties and durability.
采用德国达姆施塔特默克公司的ZrTiO(4)和ZrO(2)高折射率混合氧化物介电材料[物质H2 (Sub2)],结合氟化镁(MgF(2)),开展了低损耗减反射(AR)涂层的设计优化和实验制备。利用这些材料作为七层涂层系统成分的设计优化研究表明,当AR涂层的有效带宽扩展以覆盖更宽的光谱范围时,通常会发现设计的综合反射损耗增加、纹波更高且光谱稳定性增加。对Sub2材料的实验研究表明,这些薄膜在更宽的工艺窗口内具有优异的光学性能,这一优势在为折射率范围为1.45至1.784且具有不同机械、热和化学性能的各种玻璃制备不同AR涂层时得到了体现。AR涂层的制造工艺在光学性能和耐久性方面显示出优于99%的一致性。