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Alignment and integration of ASSIST:A test bench for VLT adaptive optics facility

机译:对准和集成辅助:VLT自适应光学设施的测试台

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ASSIST, The Adaptive Secondary Setup and Instrument STimulator, is being developed to provide a testing facility for the ESO Adaptive Optics Facility (AOF). It will allow the off-telescope testing of three elements of the VLT AOF; the Deformable Secondary Mirror (DSM) and the AO systems for MUSE and HAWK-I (GALACSI and GRAAL). The core of ASSIST consists of a 2-mirror setup (AM1-AM2) allowing the on-axis test of the DSM in interferometric mode. However, during the initial stages of ASSIST integration, DSM would not be present. This makes the task of aligning AM1-AM2 to within an accuracy of 0.05mm/1 arcmin rather challenging. A novel technique known as Shack-Hartmann method has been developed and tested in the lab for this purpose. A Shack Hartmann wavefront sensor will be used to measure the mis-alignment between AM1-AM2 by recording the coma and astigmatism in the presence of large spherical aberration introduced because of tilt/decenter of AM2 with respect to AM1. Thereafter, 20 optical components including lenses, flat mirrors and beam-splitter cubes divided into five sub-assemblies should be aligned to AM1-AM2DSM axis which ultimately passes through the mechanical axis of large AMOS rotator.
机译:正在开发辅助,自适应辅助设置和仪器刺激器,为ESO自适应光学设施(AOF)提供测试设施。它将允许对VLT AOF的三个元素的脱望镜头测试;可变形的二手镜(DSM)和Muse和Hawk-I(Galacsi和Graal)的AO系统。辅助核心由2镜设置(AM1-AM2)组成,允许在干涉模式下进行DSM的轴上测试。但是,在辅助整合的初始阶段,DSM不会出现。这使得将AM1-AM2对准的任务在0.05mm / 1 arcmin的精度范围内相当具有挑战性。为此目的,已经在实验室中开发并测试了一种称为Shack-Hartmann方法的新技术。通过在大大球形像差的情况下通过倾斜/放置在AM1的倾斜/偏见的情况下,将使用棚屋Hartmann波前传感器测量AM1-AM2之间的错误对准。此后,包括透镜,平面镜和分束器立方体的20个光学组件应与AM1-AM2DSM轴对准,该轴最终通过大Amos旋转器的机械轴线。

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