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Picometer resolution interferometric characterization of the dimensional stability of zero CTE CFRP

机译:皮克计分辨率干涉仪表征零CTE CFRP的尺寸稳定性

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Highly stable but lightweight structural materials are essential for the realization of spaceborne optical instruments, for example telescopes. In terms of optical performance, usually tight tolerances on the absolute spacing between telescope mirrors have to be maintained from integration on ground to operation in final orbit. Furthermore, a certain stability of the telescope structure must typically be ensured in the measurement band. Particular challenging requirements have to be met for the LISA Mission (Laser Interferometer Space Antenna), where the spacing between primary and secondary mirror must be stable to a few picometers. Only few materials offer sufficient thermal stability to provide such performance. Candidates are for example Zerodur~(TM) and Carbon-Fiber Reinforced Plastic (CFRP), where the latter is preferred in terms of mechanical stiffness and robustness. We are currently investigating the suitability of CFRP with respect to the LISA requirements by characterization of its dimensional stability with heterodyne laser interferometry. The special, highly symmetric interferometer setupoffers a noise level of 2pm/Hz~(1/2) at 0.1 Hz and above, and therefore represents a unique tool for this purpose. Various procedures for the determination of the coefficient of thermal expansion (CTE) have been investigated, both on a test sample with negative CTE, as well as on a CFRP tube specifically tuned to provide a theoretical zero expansion in the axial dimension.
机译:高度稳定但重量轻的结构材料对于实现太空光学仪器(例如望远镜)必不可少。在光学性能方面,通常必须保持望远镜镜之间绝对间隔的严格公差,从地面集成到最终轨道运行。此外,通常必须在测量带中确保望远镜结构的一定稳定性。 LISA任务(激光干涉仪空间天线)必须满足特殊的挑战性要求,在该任务中,主镜和副镜之间的间距必须稳定到几皮米。只有很少的材料提供足够的热稳定性来提供这种性能。候选物例如为ZerodurTM和碳纤维增强塑料(CFRP),其中就机械刚度和坚固性而言,后者是优选的。我们目前正在通过外差激光干涉仪表征CFRP的尺寸稳定性来研究CFRP相对于LISA要求的适用性。特殊的高度对称干涉仪设置 在0.1 Hz或更高频率下提供2 pm/Hz~(1/2)的噪声水平,因此是用于此目的的独特工具。已经对确定热膨胀系数(CTE)的各种程序进行了研究,无论是在CTE值为负的测试样品上,还是在经过专门调节以提供理论上轴向尺寸零膨胀的CFRP管上。

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