一种用于连续波紫外激光器的新型非线性光学晶体的加工

Jessica Stelzl, C. Wünsche, S. Höfer
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引用次数: 1

摘要

激光已经知道了很长一段时间,并广泛用于各种领域,如工业和材料加工或测量和控制技术。一种新的应用正在测试中,目的是在计量中使用连续波紫外激光器。对于这种应用,需要一种非线性光学晶体。它的加工是在德根多夫理工学院精密制造和高频技术研究所的一个为期两年的项目中开发的。在UV范围内实现全光学性能的关键因素是晶体表面的低粗糙度,因为它安装在两个棱镜之间,并且应该确保它们之间的可接触性。国内已经设计出符合要求的非线性晶体,并建立了原晶体的生产工艺。然而,由于光学均质晶体的生产已被证明是困难的,因此这种晶体的可用性非常有限。因此,为了不受试验次数的限制,在工艺开发中使用具有相似硬度和材料性能的参考材料。能够以类似的方式将参考物质的结果转移到原始晶体是很重要的。该项目的一个挑战在于晶体厚度,因为在应用中需要的最纯净的晶体形式只能达到3毫米的最大厚度。因此,在加工过程中要节约处理物料。此外,大约10到5毫米的小尺寸和材料的脆性也构成了一个问题。该项目的目标将是开发一种可以绕过所有这些问题的工艺,以便通过精密抛光实现晶体的小粗糙度。
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Processing of a new nonlinear optical crystal for continuous wave UV-laser applications
Lasers have been known for a long time and are used in a wide variety of fields such as industrial and material processing or measuring and control technology. A new application is being tested which aims to use continuous wave UV-lasers in metrology. For this application a nonlinear optical crystal is needed. Its processing is developed in a two-year project at the Institute for Precision Manufacturing and High-Frequency Technology of Deggendorf Institute of Technology. The crucial factor for the full optical performance in the UV range is the low roughness of the crystal surface, as it is installed between two prisms and the contactability between them should be ensured. In China, a nonlinear crystal that meets the requirements has already been designed and a production process for the raw crystal has been established. However, since the production of optically homogenous crystals has proven to be difficult, the availability of such is very limited. For this reason, a reference material with similar hardness and material behaviour is used in the process development in order not to be limited in the number of trials. It is important to be able to transfer the results from the reference material in an analogous way to the original crystal. One challenge of the project lies in the crystal thickness, since only a maximum thickness of three millimetres can be achieved for the purest form of the crystal required in the application. Therefore, it is important to handle the material sparingly during the process. In addition, the small dimensions of about ten to five millimetres and the brittleness of the material pose a problem. The goal of the project will be to develop a process that can circumvent all these problems so that small roughness of the crystal can be achieved by precision polishing.
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