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Evaluation and modeling of the optical properties of molybdenum particles in ceramic/metal composites

机译:陶瓷/金属复合材料中钼颗粒的光学性质的评价与建模

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摘要

The optical constants of thin sputtered molybdenum layers, embedded in a ceramic-metal composite, which was produced by a batch sputtering deposition system, were analyzed. This was done by assuming a multilayer system for a tin oxide-molybdenum cermet and calculating the optical constants from angular and polarization dependent reflection and transmission spectra. These optical constants were found to differ strongly from those for sputtered bulk material obtained ellipsometrically. Good agreement between measured effective refractive indices for cermets and effective medium calculation was found, if these optical constants for molybdenum were used in the effective medium calculations. Differences to the optical constants of the cermet determined ellipsometrically were explained by the birefringence of the cermet. The size and the shape of the embedded particles were investigated with an atomic force microscope.
机译:分析了嵌入在通过批溅射沉积系统产生的陶瓷金属复合材料中的薄溅射钼层的光学常数。这是通过假设用于氧化锡 - 钼金属陶瓷的多层系统并从角度和偏振相关的反射和透射光谱计算光学常数来完成的。发现这些光学常数强烈地不同于椭圆形溅射的散块材料的常数不同。如果在有效培养基计算中使用这些用于钼的光学常数,则发现了用于金属膜和有效培养学计算的测量有效折射率之间的良好一致性。通过金属陶瓷的双折射解释了对Cermet的光学常数的差异被Cermet的双折射解释。用原子力显微镜研究嵌入颗粒的尺寸和形状。

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