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首页> 外文期刊>Applied Surface Science >Superior refractive index tailoring properties in composite ZrO_2/SiO_2 thin film systems achieved through reactive electron beam codeposition process
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Superior refractive index tailoring properties in composite ZrO_2/SiO_2 thin film systems achieved through reactive electron beam codeposition process

机译:通过反应电子束共沉积工艺在ZrO_2 / SiO_2复合ZrO_2薄膜系统中具有优异的折射率定制性能

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Composite optical thin-film materials have received a significant amount of interest in order to relieve the material constraints on refractive indices as well as reducing the number of layers required in optical coating design. Amongst others binary zirconia-silica composite thin films have attracted considerable attentions due to their several favorable opto-mechanical properties. In the present studies such a composite system under certain compositional mixings displayed both refractive index and band gap supremacy over pure zirconia films violating the most popular Moss rule. This unexpected evolution has several practical applications one of which can be directly employed in extending the range of tunability of the refractive index. Besides, the probing of such a novel evolution through the analysis of ellipsometric refractive index modeling and morphological correlation functions has revealed several novel as well as superior microstructural properties in the composite thin film systems. All these characterization and analysis techniques distinctly indicate a strong interrelation between the microstructural ordering and superior optical properties of the present zirconia-silica codeposited composites.
机译:为了减轻材料对折射率的限制以及减少光学涂层设计中所需的层数,复合光学薄膜材料已引起广泛关注。其中,由于二元氧化锆-二氧化硅复合薄膜具有良好的光机械性能,因此备受关注。在目前的研究中,这种复合体系在一定的成分混合下,比纯氧化锆膜表现出的折射率和带隙至上性都违反了最流行的莫斯法则。这种出乎意料的进展具有几种实际应用,其中之一可以直接用于扩展折射率的可调范围。此外,通过椭偏折射率模型和形态相关函数的分析,探究了这种新颖的演变过程,从而揭示了复合薄膜系统中的几种新颖的以及优越的微观结构特性。所有这些表征和分析技术清楚地表明了本氧化锆-二氧化硅共沉积复合材料的微观结构有序性与优异的光学性能之间的强相关性。

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