Development of adjustable multifunctional optical elements for deflection, splitting, and shaping of light beams

S. Henkel, A. Barz, J. Bliedtner, Carolin Lampert, Dietmar Gräfe, Kurt Kleinen, C. Kleinen
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引用次数: 3

Abstract

In many optical applications plane optical elements are needed for deflection or splitting of light. The functionality of these parts is usually reduced to one certain task and manufacturing of them needs a big amount of effort to achieve high precision. A new optical element is presented, which can fulfill different optical functions simultaneously, is simply built and robust. It is based on glass cuboids joined together under a certain angle while introducing the possibility of fine adjusting the angle in the manufacturing process. The basic components can be modified to offer a lot of different applications. A technological process development is presented as well for more efficient machining of these new parts and existing part geometries. Novel manufacturing processes like ultrasonic grinding, ultrafine grinding and diffusion joining are experimentally investigated, since they promise significant improvements compared to conventional methods. Finally, an appropriate process chain is developed.
用于光束偏转、分裂和成形的可调多功能光学元件的研制
在许多光学应用中,需要平面光学元件来实现光的偏转或分裂。这些零件的功能通常被简化为一个特定的任务,它们的制造需要大量的努力才能达到高精度。提出了一种结构简单、鲁棒性强、可同时完成多种光学功能的新型光学元件。它是基于玻璃长方体以一定角度连接在一起,同时引入了在制造过程中微调角度的可能性。可以修改基本组件以提供许多不同的应用程序。为了更有效地加工这些新零件和现有零件的几何形状,提出了一种工艺流程开发方法。新的制造工艺,如超声磨削,超细磨削和扩散连接进行了实验研究,因为它们承诺显著改进传统方法。最后,给出了相应的流程链。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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