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Freeform Diamond Machining of Complex Monolithic Metal Optics for Integral Field Systems

机译:整体场系统复合单片金属光学器材的自由型金刚石加工

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Implementation of the optical designs of image slicing Integral Field Systems requires accurate alignment of a large number of small (and therefore difficult to manipulate) optical components. In order to facilitate the integration of these complex systems, the Astronomical Instrumentation Group (AIG) of the University of Durham, in collaboration with the Labor fur Mikrozerspanung (Laboratory for Precision Machining -LFM) of the University of Bremen, have developed a technique for fabricating monolithic multi-faceted mirror arrays using freeform diamond machining. Using this technique, the inherent accuracy of the diamond machining equipment is exploited to achieve the required relative alignment accuracy of the facets, as well as an excellent optical surface quality for each individual facet. Monolithic arrays manufactured using this freeform diamond machining technique were successfully applied in the Integral Field Unit for the GEMINI Near-InfraRed Spectrograph (GNIRS IFU), which was recently installed at GEMINI South. Details of their fabrication process and optical performance are presented in this paper. In addition, the direction of current development work, conducted under the auspices of the Durham Instrumentation R&D Program supported by the UK Particle Physics and Astronomy Research Council (PPARC), will be discussed. The main emphasis of this research is to improve further the optical performance of diamond machined components, as well as to streamline the production and quality control processes with a view to making this technique suitable for multi-IFU instruments such as KMOS etc., which require series production of large quantities of optical components.
机译:图像切片积分场系统的光学设计的实现需要精确对准大量的小(并且因此难以操纵)光学组件。为了促进这些复杂系统的整合,达勒姆大学的天文仪表组(AIG)与不来梅大学的劳动力毛皮Mikrozerspanung(精密加工-LFM实验室)合作开发了一种技术使用自由形式金刚石加工制造单片多面镜阵列。使用该技术,利用金刚石加工设备的固有精度来实现小平面的所需的相对对准精度,以及每个单个方面的优异光学表面质量。使用这种自由形式金刚石加工技术制造的单片阵列成功应用于Gemini近红外光谱仪(Gnirs Ifu)的整体场单元,最近安装在Gemini South。本文提出了其制造工艺和光学性能的细节。此外,将讨论在英国粒子物理学和天文学研究委员会(PPARC)支持的Durham仪表研发计划的主持下进行的当前发展工作的方向。本研究的主要重点是进一步提高金刚石机加工组件的光学性能,以及简化生产和质量控制过程,以便使该技术适用于kmos等的多IFU仪器,这需要系列生产大量光学元件。

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