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Feasibility studies for the alignment of the Thirty Meter Telescope

机译:三十米望远镜对准的可行性研究

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摘要

The Alignment and Phasing System (APS) of the Thirty Meter Telescope (TMT) is an instrument that will be responsible for aligning the primary, secondary, and tertiary mirrors of TMT. The telescope and APS are modeled with a ray tracing simulation program. Various sets of initial conditions and alignment procedures are simulated, and results are compared to the image quality specifications for the telescope. A key factor in alignment quality is the rotation of the flat tertiary mirror (M3), which rotates to serve the science instruments. The procedures that use only APS measurements yield unacceptably large image diameters, while procedures that use measurements from APS and another WFS at a different location result in telescope alignments that produce acceptable image diameters at the 90percent confidence level. These two-sensor procedures can separate M3 errors from errors on other mirrors better than APS-only procedures. However, APS-only procedures should be adequate for the restricted configurations of instruments available at first light. In general, APS-only procedures should also be capable of maintaining the alignment produced initially by the more complex two-sensor procedures.
机译:三十米望远镜(TMT)的对准和定相系统(APS)是一种仪器,用于对准TMT的主要,辅助和三次反射镜。望远镜和APS用光线追踪模拟程序建模。模拟各种初始条件和对准程序,并将结果与​​望远镜的图像质量规格进行比较。对准质量的关键因素是平面三镜(M3)的旋转,该三镜旋转以服务于科学仪器。仅使用APS测量的过程会产生不可接受的大图像直径,而在不同位置使用来自APS和另一个WFS的测量结果的过程会导致望远镜对准,从而在90%的置信度水平上产生可接受的图像直径。与仅使用APS的过程相比,这些双传感器过程可以将M3错误与其他反射镜上的错误分开。但是,仅使用APS的程序就足以满足初次使用时仪器的受限配置。通常,仅APS的过程还应该能够保持最初由更复杂的双传感器过程产生的对齐。

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