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Thermal effects thermal compensation in the OSIRIS camera

机译:Osiris相机中的热效应和热补偿

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摘要

Tight stability requirements for the imager/spectrograph OSIRIS (a Day One optical instrument for the GTC telescope) demand a careful treatment of thermal effects within the OSIRIS camera. Mostly due to the thermal response of refraction indices of its glasses (and not so much to curvature, spacing or thickness variations of the lenses), the camera optics alone degrades beyond requirements the image quality and plate scale under the expected ambient temperature variations (about 1.8 °C/hour). Thermal effects and thermal compensator studies of the OSIRIS camera are first summarized, before discussing how the motion (of a few microns per °C) of the 3rd camera doublet, as a sole compensator, practically eliminates thermal influences on both image quality and plate scale. A concept for the passive implementation of the compensator is also discussed.
机译:对成像仪/光谱仪Osiris的紧密稳定性要求(GTC望远镜的一天光学仪器)要求仔细治疗Osiris相机内的热效应。主要是由于其眼镜的折射率的热响应(并且不那么多到镜片的曲率,间隔或厚度变化),单独的相机光学器件在预期的环境温度变化下的图像质量和平板标度之外地降低了超出要求(关于1.8°C /小时)。首先总结了Osiris相机的热效应和热补偿器研究,然后讨论了第三次摄像机双板的动作(每°C)作为唯一补偿器,实际上消除了对图像质量和平板标度的热影响。还讨论了补偿器的被动实现的概念。

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