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Process-Parameter-Dependent Optical and Structural Properties of ZrO2MgO Mixed-Composite Films Evaporated from the solid Solution

机译:从固溶体蒸发的ZrO2MgO混合复合膜的工艺参数相关的光学和结构性质

摘要

The process-parameter-dependent optical and structural properties of ZrO2MgO mixed-composite material have been investigated. Optical properties were derived from spectrophotometric measurements. By use of atomic force microscopy, x-ray diffraction analysis, and energy-dispersive x-ray (EDX) analysis, the surface morphology, grain size distributions, crystallographic phases, and process-dependent material composition of films have been investigated. EDX analysis made evident the correlation between the oxygen enrichment in the films prepared at a high level of oxygen pressure and the very low refractive index. Since oxygen pressure can be dynamically varied during a deposition process, coatings constructed of suitable mixed-composite thin films can benefit from continuous modulation of the index of refraction. A step modulation approach is used to develop various multilayer-equivalent thin-film devices.
机译:研究了与工艺参数有关的ZrO2MgO混合复合材料的光学和结构性能。光学性质来自分光光度法测量。通过使用原子力显微镜,X射线衍射分析和能量色散X射线(EDX)分析,已经研究了膜的表面形态,晶粒尺寸分布,结晶相和与工艺有关的材料组成。 EDX分析表明,在高水平的氧气压力下制备的薄膜中的氧气富集与极低的折射率之间存在相关性。由于氧气压力可以在沉积过程中动态变化,因此由合适的混合复合薄膜构成的涂层可以受益于折射率的连续调节。使用步进调制方法来开发各种等效的多层薄膜器件。

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    Shapiro A. P.; Sahoo N. K.;

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  • 年度 1998
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