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Design of a hybrid refractive-diffractive telescope for observations in UV

机译:紫外线观测的混合屈光衍射望远镜的设计

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Telescopes are one of the common types of satellite payloads. They are used both for Earth and astronomical observations. By using space telescopes it is possible to eliminate the negative effect of the atmosphere on image quality. Additionally, observations in some spectral ranges can be performed only from space due to absorption of certain wavelengths in the atmosphere. One such range is UV below 300 nm, which is of particular interest when it comes to the investigation of hot objects. Reflective telescopes are commonly used in this spectral range, although many classical designs are limited in their useful field of view to values below 1 degrees. In this paper a hybrid refractive-diffractive telescope design working in a 200 nm - 300 nm spectral range with a field of view 10 degrees x10 degrees is proposed. Its performance is compared to purely refractive and reflective systems and significant improvement in the imaging quality of the system and decrease of its size is shown. The choice of the diffractive element type is explained. Parameters of the systems are based on the requirements for a proposed Polish mission UVSat which aims to enable long-term observations of a large number of stars exhibiting UV variance.
机译:望远镜是卫星有效载荷的常见类型之一。它们都用于地球和天文观察。通过使用空间望远镜,可以消除大气对图像质量的负面影响。另外,在一些光谱范围内的观察可以仅从大气中吸收某些波长的空间来执行。一个这样的范围是UV低于300nm,当涉及到对热物体的调查时特别感兴趣。反射望远镜通常用于该光谱范围,尽管许多经典设计在其有用的视野中受到限制,但值低于1度。在本文中,提出了一种在200nm - 300nm频谱范围内工作的混合折射衍射望远镜设计,其中包括视场10°x10度。将其性能与纯度折射和反射系统进行比较,并且显示了系统的成像质量和其尺寸的显着改善。解释衍射元件类型的选择。该系统的参数基于提出的波兰使命UVSAT的要求,其旨在使大量恒星的长期观察表现出紫外方差。

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