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Near Ultraviolet Spectrograph for Balloon Platform

机译:近紫外光谱仪进行气球平台

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Small and compact scientific payloads may be easily designed constructed and flown on high altitude balloons. Despite the fact that large orbital observatories provide accurate observations and statistical studies of remote and/or faint space sources, small telescopes on board balloons or rockets are still attractive because of their low cost and rapid response time. We describe here a near ultraviolet (NUV) spectrograph designed to be flown on a high-altitude balloon platform. Our basic optical design is a modified Czerny-Turner system using off the shelf optics. We compare different methods of aberration corrections in such a system. We intend the system to be portable and scalable to different telescopes. The use of reflecting optics reduces the transmission loss in UV. We plan on using an image intensified CMOS sensor operating in photon counting mode as the detector of choice.
机译:小型和紧凑的科学有效载荷可以很容易地设计和飞行高空气球。尽管大型轨道观察者提供了对遥控和/或微弱空间来源的准确观察和统计研究,但由于其低成本和快速响应时间,气球或火箭队的小望远镜仍然具有吸引力。我们在这里描述了近紫外(Nuv)光谱仪,设计用于在高空球囊平台上飞行。我们的基本光学设计是一种改进的Czerny-Turner系统,使用了搁板光学器件。我们比较这样一个系统中的不同的像差校正方法。我们打算将系统便携,可扩展到不同的望远镜。反射光学器件的使用降低了UV中的传输损耗。我们计划使用以光子计数模式运行的图像加强的CMOS传感器作为选择的检测器。

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