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Challenges of developing hemispherical ZnS domes coated with a durable anti-reflection coating

机译:涂有耐用抗反射涂层的半球形ZNS圆顶的挑战

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The design of a modern optical system often raises new challenges for manufacturers of high end optical components. One such challenge, which has become more and more common, is the requirement for highly durable hemispherical domes to allow for wide field of view. There are many difficulties to overcome before the final product can be made. In this paper we present some of the major difficulties of developing such domes made from ZnS grown by chemical vapor deposition (CVD). First, the CVD process which introduces the challenge of removing the grown raw dome from the graphite mold without causing cracking and breakage is discussed. Then, the challenges introduced by the electron beam (EB)-gun evaporation method, most commonly used for evaporating the anti-reflection coating, are presented. Amongst these challenges, the mounting of the dome in-side the coating chamber, the coating uniformity over the dome's curvature and the coating's environmental durability are the most difficult problems to overcome. The paper presents how computerized modeling along with experimental procedures can be combined to minimize the difficulties in the production processes and improve the overall product quality and yield.
机译:现代光学系统的设计常常为高端光学元件制造商提高了新的挑战。一个这样的挑战是越来越常见的,是高度耐用的半球形圆顶的要求,以允许广场视野。在最终产品可以进行之前克服许多困难。在本文中,我们展示了通过化学气相沉积(CVD)生长的Zns制造的这种圆顶的一些主要困难。首先,讨论了从石墨模具中除去生长的原始圆顶而不引起破裂和破裂的挑战的CVD方法。然后,提出了由电子束(EB)蒸发方法引入的挑战,最常用于蒸发抗反射涂层。在这些挑战中,圆顶在涂层室内安装涂层室,涂层均匀性在圆顶曲率和涂层的环境耐久性上是最难以克服的问题。本文提出了如何组合计算机化建模以及实验程序,以最大限度地减少生产过程中的困难,提高整体产品质量和产量。

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