Comet interceptor's EnVisS camera sky mapping function

C. Pernechele, V. Da Deppo, G. Brydon, G. Jones, L. Lara, H. Michaelis
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引用次数: 5

Abstract

Entire Visible Sky (EnVisS) is one of the payload proposed for the ESA selected F-Class mission Comet Interceptor. The main aim of the mission is the study of a dynamically new comet, or an interstellar object, entering the inner solar system. The EnVisS camera is designed to capture the entire sky in some visible wavelength bands while the spacecraft passes through the comet's tail environment. EnVisS optical head is composed of a fisheye lens with a field of view of 180° x 40° coupled with an imaging detector equipped with both band-pass and polarimetric filters. Very wide angle lens, as a fisheye, must be necessarily anamorphic, i. e. its focal length must change along the field of view, in order to fit a finite-size imaging detector. This anamorphic distortion is introduced by the optical designer, depending on the desired applications. Each possible distortion bring along different field of view mapping and this must be taken into account by the scientific/metrological user, because the plate scale is variable along the focal plane. To obtain useful scientific information from fisheye images (astrometry, flux calibration and brightness measurements), a precise determination of the mapping function has to be accurately determined. In this paper we describe the expected distortion map of the EnVisS camera.
彗星拦截器的EnVisS相机天空映射功能
全可见天空(EnVisS)是ESA选定的f级彗星拦截器任务的有效载荷之一。该任务的主要目的是研究进入内太阳系的动态新彗星或星际物体。EnVisS相机的设计目的是在航天器穿过彗星尾部环境时,在一些可见波长波段捕捉整个天空。EnVisS光学头由一个视场为180°x 40°的鱼眼镜头和一个配备带通和偏振滤光片的成像探测器组成。非常广角镜头,作为鱼眼镜头,必须是变形的,即它的焦距必须沿着视场变化,以适应有限尺寸的成像探测器。这种畸变是由光学设计师引入的,取决于所需的应用。每一种可能的畸变都会带来不同的视场映射,这是科学/计量用户必须考虑到的,因为平板比尺沿着焦平面是可变的。为了从鱼眼图像(天体测量、通量校准和亮度测量)中获得有用的科学信息,必须精确确定测绘功能。本文描述了EnVisS相机的期望畸变图。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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