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Manufacturing of aluminum mirrors for cryogenic applications

机译:低温应用铝镜的制造

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Several mirrors for the upgrade of the CRyogenic high-resulution InfraRed Echelle Sprectrograph (CRIRES) at the Very Large Telescope, were manufactured by diamond turning and polishing. These mirrors will be used in the cross-dispersion unit (CDU) and the fore optics of the instrument. For background level reasons, the operational temperature of the CDU is set to 65 K. Therefore, the flat and spherical mirrors used in the CDU, which are made of melt-spun aluminum alloy A16061, had to be artificially aged, to improve the dimensional stability at cryogenic temperatures. After diamond turning, magnetorheological finishing (MRF) was used for a deterministic shape correction and to remove the turning marks of the RSA6061 mirrors. To reduce the micro-roughness, a further smoothing step was necessary. A micro-roughness between 1 nm RMS and 5 nm RMS as well as shape deviations below 35 nm RMS were achieved. The mirrors were coated by inline magnetron sputtering with a high-reflective gold layer or protected silver, respectively.
机译:通过金刚石转动和抛光制造,用于在非常大的望远镜升级的几个镜子用于在非常大的望远镜下升级。这些镜子将用于交叉分散单元(CDU)和仪器的前光学。出于背景级别的原因,CDU的操作温度设定为65 k。因此,在CDU中使用的平板和球形镜,其由熔化型铝合金A16061制成,必须是人为地式的,以改善尺寸低温温度的稳定性。在金刚石转动之后,磁流变精加工(MRF)用于确定性形状校正,并拆下RSA6061镜的转弯标记。为了减少微粗糙度,需要进一步的平滑步骤。实现了1nm rms和5nm rms之间的微粗糙度以及低于35nm rms的形状偏差。通过内联磁控溅射涂覆镜,分别具有高反射金层或受保护的银。

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