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红外光学薄膜材料光学常量计算和在宽带增透膜中的应用
The Fitting of Optical Constants of Infrared Coating Materials and Application in Broadband Antireflection Coatings
【摘要】 使用经典洛伦兹谐振子模型对热蒸发制备的锗、硫化锌以及低吸收稀土氟化物薄膜的红外透射光谱进行拟合,得出这些材料在中长波红外区的光学常量.使用这三种材料设计并制备了锗窗口7.7~15μm宽带增透膜系,通过优化设计并且使用长波红外区吸收小的低折射率材料,在长波区(13~15μm)的透过率测量值有明显提高,15μm处的透过率为89.9%.
【Abstract】 The middle and long wave infrared optical constants of evaporated films,such as germanium,zinc sulphide,low absorption rare earth fluoride,etc,were obtained by fitting the transmission spectrum based on classical Lorenz oscillator model.Broad band antireflective coating from 7.7 μm to 15 μm had been designed and fabricated using these three materials.The measured transmission in the long wave region(13~15 μm)had been improved greatly by refining the design and using the low absorption materials.The measured transmission at 15 μm is 89.9%.
【关键词】 光学薄膜;
光学常量;
洛伦兹谐振子模型;
红外增透膜;
【Key words】 Optical coating; Optical constants; Lorenz oscillator model; Infrared antireflection coating;
【Key words】 Optical coating; Optical constants; Lorenz oscillator model; Infrared antireflection coating;
【基金】 国家自然科学基金(60678058)资助
- 【文献出处】 光子学报 ,Acta Photonica Sinica , 编辑部邮箱 ,2008年03期
- 【分类号】TB383.2
- 【被引频次】11
- 【下载频次】633