光学材料的发展趋势

J. A. Detrio
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引用次数: 2

摘要

光学材料的趋势可以很容易和准确地预测-光学材料将在未来更好,更便宜,更复杂。这个总结可能过于简单,也许所有这些趋势并不适用于所有光学材料。然而,最近的经验表明,在制备高质量光学材料方面已经取得了重大进展。尤其令人印象深刻的是固态激光主体材料,包括单晶、玻璃和红外激光器的光学元件,由碱卤化物、碱土氟化物、蓝宝石和CVD ZnSe制成。消费产品对低成本模塑光学的需求导致了塑料使用的扩大和精密成型工艺的发展。红外光学也有类似的发展趋势;例如,镜片的压紧。单点金刚石车削加工非球面是生产复杂零件能力提高的一个例子。溶胶凝胶、MBE技术用于生产渐变折射率增透涂层、光学材料的表面增强和渐变折射率光学器件的生产是新兴的材料工艺,可能在光学元件的制造中发挥越来越大的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trends in Optical Materials
The trend in optical materials can be easily and accurately predicted -- optical materials will be better, cheaper, and more complex in the future. This summary may be too simple and perhaps all of these trends will not be true of all optical material. However, recent experience shows that significant progress has been made in preparing high quality optical materials. Especially impressive are the solid state laser host materials which include single crystals and glasses and optical components for infrared lasers fabricated from alkali halides, alkaline earth fluorides, sapphire, and CVD ZnSe. Demands for low cost molded optics for consumer products have lead to the expanded use of plastics and the development of precision molding processes. Similar trends are developing for infrared optics; for example, the pressing of lenses. Aspheric surfaces machined by single point diamond turning are an example of the improved capability for producing complex components. Sol gel, MBE techniques for the production of graded index antireflection coatings, surface strengthening of optical materials and the production of gradient index optics are emerging materials processes that will probably play a growing role in the fabrication of optical components.
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