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Manufacturing and optical testing of 800 mm lightweight all C/SiC optics

机译:800毫米轻质全C / SiC光学器件的制造和光学测试

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Owing to its high specific stiffness and high thermal stability, silicon carbide is one of the materials most suitable for large space-borne optics. Technologies for accurate optical measurements of large optics in the vacuum or cryogenic conditions are also indispensable. Within the framework of the large SiC mirror study program led by JAXA, we manufactured an 800-mm-diameter lightweight telescope, all of which is made of HB-Cesic, a new type of carbon-fiber-reinforced silicon carbide (C/SiC) material developed jointly by ECM, Germany and MELCO, Japan. We first fabricated an 800-mm HB-Cesic primary mirror, and measured the cryogenic deformation of the mirror mounted on an HB-Cesic optical bench in a liquid-helium chamber. We observed the cryo-deformation of 110 nm RMS at 18 K with neither appreciable distortion associated with the mirror support nor significant residual deformation after cooling. We then integrated the primary mirror and a high-order aspheric secondary mirror into a telescope. To evaluate its optical performance, we established a measurement system, which consists of an interferometer in a pressure vessel mounted on a 5-axis adjustable stage, a 900-mm auto-collimating flat mirror, and a flat mirror stand with mechanisms of 2-axis tilt adjustment and rotation with respect to the telescope optical axis. We installed the telescope with the measurement system into the JAXA 6-m chamber and tested them at a vacuum pressure to verify that the system has a sufficiently high tolerance against vibrations in the chamber environment. Finally we conducted a preliminary study of sub-aperture stitching interferometry, which is needed for telescopes of our target missions in this study, by replacing the 900-mm flat mirror with a rotating 300-mm flat mirror.
机译:由于其高的比刚度和高的热稳定性,碳化硅是最适合大型太空光学器件的材料之一。在真空或低温条件下对大型光学器件进行精确光学测量的技术也是必不可少的。在JAXA领导的大型SiC镜研究计划的框架内,我们制造了直径为800毫米的轻型望远镜,所有望远镜均由HB-Cesic(一种新型的碳纤维增强的碳化硅(C / SiC))制成。 )由德国ECM和日本MELCO共同开发的材料。我们首先制造了800毫米HB-Cesic主反射镜,并测量了安装在液氦腔室内HB-Cesic光学工作台上的反射镜的低温变形。我们观察到在18 K时110 nm RMS的冷变形,既没有与镜架相关的明显变形,也没有冷却后的明显残余变形。然后,我们将主镜和高阶非球面副镜集成到望远镜中。为了评估其光学性能,我们建立了一个测量系统,该系统由安装在5轴可调平台上的压力容器中的干涉仪,900毫米自动准直平面镜和具有2个机构的平面镜架组成。轴倾斜调整和相对于望远镜光轴的旋转。我们将带有测量系统的望远镜安装到JAXA 6米腔室内,并在真空压力下对其进行了测试,以验证该系统对腔室内的振动具有足够高的耐受性。最后,我们通过将300毫米平面镜替换为300毫米平面镜,对亚孔径拼接干涉测量法进行了初步研究,这项研究是本研究目标望远镜所必需的。

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