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Rewriting Optical Elements

机译:重写光学元素

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摘要

The observatories of tomorrow will necessarily be equipped with robotic facilities which will ease the use and allow a full time schedule optimization. Herein we present the application of organic materials with photochromic properties in astronomical spectrographs. Photochromism is the reversible transformation of the optical (in particular the color) and spectral properties of a material by suitable light. Organic photochromic materials can be cast in thin layers (tens to hundredths of microns) where a chosen pattern can be written leaving the layer with two areas showing different refractive index and absorption/transmission spectra. We used the opaque/transparent property of such photochromic materials to build rewritable focal plane mask for MOS spectroscopy. They were tested in laboratory and then sky tests were successfully carried out by using the AFOSC camera (Asiago Faint Object Spectrograph and Camera) of the 1.8 m telescope at Asiago Observatory. The results obtained are encouraging and the first MOS writing device is now in use at the astronomical observatory of Asiago.
机译:明天的观察者必须配备机器人设施,这将缓解使用并允许全程计划优化。在此我们介绍了有机材料在天文光谱仪中具有光致变色特性的应用。光致变色是通过合适光的光学(特别是颜色)和材料的光谱性能的可逆变换。有机光致变色材料可以在薄层(数十至百分之一毫秒)中浇铸,其中可以用两个区域写入所选择的图案,其中两个区域显示出不同的折射率和吸收/透射光谱。我们使用这种光致变色材料的不透明/透明特性,为MOS光谱构建可重写的焦平面掩模。它们在实验室进行了测试,然后通过在Asiago天文台的1.8米望远镜的AFOSC相机(AsiaGo Time Lights Spector和Camera)成功进行了天空测试。获得的结果是令人鼓舞的,第一个MOS写入装置现在正在Asiago的天文天文台使用。

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