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Refractive index and dispersion variation in precision optical glass molding by computed tomography

机译:利用计算机断层摄影技术在精密光学玻璃成型中的折射率和色散变化

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摘要

Glass compression molding is an alternative manufacturing method for efficient, high-quality, low-cost optical component manufacturing. However, in compression molding, refractive index variation is inadvertently introduced to glass, which can influence optical performance of molded glass lenses, especially for lenses used in high precision applications. In order to study refractive index variation and dispersion in molded glass lenses after cooling, a group of BK7 cylindrical glass lenses were thermally treated with various heating and cooling conditions. The molded glass lenses were measured by use of an optical setup based on a Mach-Zehnder interferometer with red, green, and blue lasers separately. Using the wavefront information extracted from fringe patterns, refractive index and dispersion variation in molded glass lenses were reconstructed using a filtered backprojection algorithm. Furthermore, refractive index and dispersion variation at different cooling rates and different soaking temperatures were investigated.
机译:玻璃压缩成型是用于高效,高质量,低成本光学组件制造的替代制造方法。然而,在压缩成型中,折射率变化被无意地引入到玻璃中,这会影响成型玻璃透镜的光学性能,特别是对于高精度应用中使用的透镜。为了研究冷却后成型玻璃透镜的折射率变化和色散,在不同的加热和冷却条件下对一组BK7圆柱玻璃透镜进行了热处理。通过使用基于Mach-Zehnder干涉仪的光学装置分别测量红色,绿色和蓝色激光,来测量模制玻璃透镜。使用从条纹图案提取的波前信息,使用滤波反投影算法重建模制玻璃透镜的折射率和色散变化。此外,研究了在不同冷却速率和均热温度下的折射率和色散变化。

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