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Optical glass - refractive index change with wavelength and temperature

机译:光学玻璃-折射率随波长和温度变化

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With the catalog of 1992 SCHOTT introduced two formulae each with six parameters for a better representation of the refractive index of optical glasses. The Sellmeier-equation improved the characterization of dispersion at room temperature and the Hoffmann equation that of its temperature dependence. Better representation had been expected because both formulae were derived from general dispersion theory. The original publication of Hoffmann et al. from 1992 contains first results on the accuracy of the fits. The extended use of the formulae has led to a collection of data allowing reviewing the adequacy of the Sellmeier-equation approach on a much broader basis. We compare fitted refractive index values with measured values for all wavelengths used at our precision refractive index goniometer. Data sets are available for specific melts of the four representative glass types N-BK7, N-FK5, LF5 and IRG2. For some materials, the optical glass N-LAF21, the IR glass IRG2 and the crystal CaF2, several sets of data for the temperature dependence of the refractive index are available thus giving evidence for the variation of these properties among melts of the same material.
机译:肖特在1992年的产品目录中引入了两个公式,每个公式具有六个参数,以更好地表示光学玻璃的折射率。 Sellmeier方程改善了室温下色散的特性,并改善了霍夫曼方程的温度依赖性。由于这两个公式均来自通用色散理论,因此有望获得更好的表示。 Hoffmann等人的原始出版物。从1992年开始包含关于拟合精度的第一个结果。公式的广泛使用已导致收集数据,从而可以在更广泛的基础上回顾Sellmeier方程法的适用性。我们将拟合的折射率值与在我们的精密折射率测角仪上使用的所有波长的测量值进行比较。有四种代表性玻璃N-BK7,N-FK5,LF5和IRG2的特定熔体的数据集。对于某些材料,光学玻璃N-LAF21,IR玻璃IRG2和晶体CaF2,有几组关于折射率的温度依赖性的数据,因此为相同材料的熔体之间这些性质的变化提供了证据。

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