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Sellmeier coefficients and dispersion of thermo-optic coefficients for some optical glasses

机译:某些光学玻璃的Sellmeier系数和热光系数的色散

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The refractive index and its variation with temperature, the thermo-optic coefficient (dn/dT), are analyzed with two separate physically meaningful models for more than a dozen of some important Schott and Ohara optical glasses to find the refractive index at any operating temperature for any wavelength throughout the transmission region. The room-temperature catalog values of refractive indices are fitted with a two-pole Sellmeier equation. Both the average electronic absorption band gap and the lattice absorption frequency, lying in the vacuum UV and IR regions, respectively, contribute to the refractive indices and their dispersion. The estimated absorption band gaps are at 8.5-11.9 eV, and these values agree with the measured values at 8.8-11.6 eV satisfactorily for normal optical glasses. The higher-index glasses have electronic absorption in the region of 5.6-6.3 eV, and the estimated band gap of SF6 glass is 6.0 eV. The dispersion of thermo-optic coefficients is accounted for satisfactorily with a model, based on three physical parameters, the thermal expansion coefficient and excitonic and isentropic optical band gaps that are in the vacuum UV region. These optical constants are used to compute refractive indices at any operating temperature and wavelength. The Abbe number and the chromatic dispersion characteristics of these glasses are evaluated from the computed optical constants; the values of the chromatic dispersions are evaluated particularly at the three optical windows of the optical fiber communication systems and femtosecond technology. (C) 1997 Optical Society of America.
机译:使用两个独立的有意义的物理模型对十二个重要的Schott和Ohara光学眼镜的折射率及其随温度的变化(热光系数(dn / dT))进行分析,以求出在任何工作温度下的折射率对于整个透射区域中的任何波长。折射率的室温目录值符合两极Sellmeier方程。平均电子吸收带隙和晶格吸收频率分别位于真空紫外区和红外区,均有助于折射率及其色散。估计的吸收带隙为8.5-11.9 eV,这些值与普通光学眼镜的8.8-11.6 eV的测量值令人满意。高折射率玻璃在5.6-6.3 eV范围内具有电子吸收,SF6玻璃的估计带隙为6.0 eV。基于一个模型,基于三个物理参数,即在真空UV区域中的热膨胀系数以及激子和等熵光学带隙,可以令人满意地说明热光系数的色散。这些光学常数用于计算任何工作温度和波长下的折射率。这些眼镜的阿贝数和色散特性是根据计算出的光学常数来估算的。特别是在光纤通信系统和飞秒技术的三个光学窗口处评估色散值。 (C)1997年美国眼镜学会。

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