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The Pre-Optics mechanism prototypes for HARMONI

机译:HARMONI的光学前机制原型

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HARMONI is a visible and near-infrared (0.47 to 2.45 μm) integral field spectrograph, providing the ELT's core spectroscopic capability at first light. A pre-optics subsystem provides four selectable spatial pixel scales, in addition to other beam conditioning functions such as shutter and pupil masks. For the validation of the mechanisms in charge of these functions (fast shutter and the plane mask wheel) we have planned some prototypes to test the design solutions. The focal plane mask wheel sits in the input focus of the cryostat. It provides 16 user-selectable positions for masks (28×40 mm) used in observation. The key driver for this mechanism is the high repeatability (±2.5 μm) required, equivalent to ~1mas in the input focal plane. The IAC has previously designed, manufactured, tested and put in operation cryogenic wheels with high repeatability; however, the challenge of obtaining a wheel with such repeatability requires testing new concepts of detent positioning systems. The shutter allows for exposures shorter than the minimum read time of the near-IR detectors and is needed for any CCD observations with the visible cameras. A dual shutter design is needed to achieve the necessary open/close times (<20 ms), but this also provides some redundancy and a graceful failure mode for this critical device. To mitigate risks on the proper behaviour of a fast cryogenics shutter a prototype based on a simple concept has been manufactured. We present the design and results for the performed cryogenic tests of a mask wheel and a shutter prototypes that we have developed.
机译:HARMONI是可见光和近红外(0.47至2.45μm)积分场光谱仪,可提供ELT的核心光谱能力。除其他光束调节功能(如快门和光瞳掩模)外,光学前子系统还提供了四个可选的空间像素比例。为了验证负责这些功能的机构(快速快门和平面掩膜轮),我们计划了一些原型来测试设计解决方案。焦平面掩膜轮位于低温恒温器的输入焦点中。它为观察中使用的遮罩(28×40 mm)提供了16个用户可选的位置。该机制的关键驱动因素是所需的高重复性(±2.5μm),相当于输入焦平面中的〜1mas。 IAC先前已设计,制造,测试并投入运行,可重复性极高。然而,获得具有这种可重复性的车轮所面临的挑战要求测试制动定位系统的新概念。快门允许的曝光时间短于近红外探测器的最短读取时间,并且对于可见照相机进行的任何CCD观察都需要使用快门。需要双百叶窗设计以实现必要的打开/关闭时间(<20 ms),但这也为该关键设备提供了一定的冗余度和适度的故障模式。为了减轻快速低温百叶窗的正确性能带来的风险,已经制造了基于简单概念的原型。我们介绍了已开发的面罩轮和百叶窗原型进行低温测试的设计和结果。

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