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Multilayer Coating of Optical Substrates by Ion Beam Sputtering

机译:通过离子束溅射对光学基板进行多层镀膜

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Ion beam sputtering is well established in research and industry, despite its relatively low deposition rates compared to electron beam evaporation. Typical applications are coatings of precision optics, like filters, mirrors and beam splitter. Anti-reflective or high-reflective multilayer stacks benefit from the high mobility of the sputtered particles on the substrate surface and the good mechanical characteristics of the layers. This work gives the basic route from single layer optimization of reactive ion beam sputtered Ta2O5 and SiO2 thin films towards complex multilayer stacks for high-reflective mirrors and anti-reflective coatings. Therefore films were deposited using different oxygen flow into the deposition chamber Afterwards, mechanical (density, stress, surface morphology, crystalline phases) and optical properties (reflectivity, absorption and refractive index) were characterized. These knowledge was used to deposit a multilayer coating for a high reflective mirror.
机译:尽管与电子束蒸发相比,离子束溅射的沉积速率较低,但离子束溅射在研究和工业领域已广为人知。典型的应用是精密光学器件的镀膜,例如滤光镜,反射镜和分束器。抗反射或高反射多层堆叠体受益于在基板表面上溅射的粒子的高迁移率和各层的良好机械特性。这项工作给出了从反应性离子束溅射Ta2O5和SiO2薄膜的单层优化到高反射镜和抗反射涂层的复杂多层堆叠的基本途径。因此,使用不同的氧气流将薄膜沉积到沉积室中。然后,表征了机械性能(密度,应力,表面形态,晶相)和光学特性(反射率,吸收率和折射率)。这些知识被用来沉积用于高反射镜的多层涂层。

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