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Developing materials for depositing the coatings of optical items of lasers for the visible and near-IR regions

机译:开发用于可见光和近红外区域的激光光学项目镀膜的沉积材料

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摘要

This paper discusses the problem of predicting and creating materials based on the oxides of metals for interference coatings of laser optics. It is shown that the energy parameter of metal-oxygen bonds plays a role in forming the strength characteristics of oxide layers. The fact of partial thermal dissociation of oxide materials during vacuum evaporation is established by the methods of diffuse reflection spectroscopy and x-ray phase analysis. The use of rare-earth oxides as additives promotes the compositional stabilization of the materials. The refractive index of the layers lies within the limits 2.0-2.3, while the scattering coefficient is 0.05-0.17. It is shown that the optical parameters of the coatings can be further improved by optimizing the conditions under which they are deposited and the composition of the materials. (C) 2006 Optical Society of America.
机译:本文讨论了基于金属氧化物预测和创建用于激光光学干涉涂层的材料的问题。结果表明,金属-氧键的能量参数对氧化层强度特性的形成起着重要作用。通过漫反射光谱和X射线相位分析的方法建立了真空蒸发过程中氧化物材料部分热解离的事实。使用稀土氧化物作为添加剂可促进材料的成分稳定性。各层的折射率在2.0-2.3的限值内,散射系数为0.05-0.17%。结果表明,通过优化涂层的沉积条件和材料的组成,可以进一步提高涂层的光学参数。(C) 2006年美国光学学会。

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