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Refractive index homogeneity TWE effect on large aperture optical systems

机译:折射率均匀度TWE对大孔径光学系统的影响

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Sapphire windows are routinely being used in demanding aerospace applications due to their high strength and desirable optical and material properties. Sapphire is particularly useful in addressing the increasing need for systems that provide a wider range of capabilities in a single package. In general, refractive index homogeneity of the component materials can have a significant impact on overall optical system performance. This leads to the need for a deeper understanding of the shape and magnitude of index inhomogeneity in large sapphire windows to ensure predictable, high quality operation. Thin, sapphire slices from a sapphire crystal boule grown via the Heat Exchanger Method (HEM) have been previously evaluated for refractive index homogeneity over a 25.4cm (10.0") aperture. The resultant transmitted wavefront error (TWE) from those measurements has now been used to model typical optical systems to quantify the effects on system-level performance attributed to representative amounts of index inhomogeneity in the sapphire window. The results of this modeling effort are presented in the following paper.
机译:蓝宝石窗由于其高强度以及理想的光学和材料特性,通常用于苛刻的航空航天应用。蓝宝石在满足对在单个封装中提供更广泛功能的系统日益增长的需求方面特别有用。通常,组成材料的折射率均匀性会对整个光学系统性能产生重大影响。这导致需要更深入地了解大型蓝宝石窗口中折射率不均匀的形状和大小,以确保可预测的高质量操作。先前已经对通过热交换法(HEM)生长的蓝宝石晶体制成的薄蓝宝石切片进行了25.4cm(10.0“)孔径的折射率均一性评估。这些测量结果所产生的透射波前误差(TWE)现在为用于建模典型的光学系统,以量化蓝宝石窗口中代表折射率不均匀性的代表数量对系统级性能的影响,该建模工作的结果在下面的文章中介绍。

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