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Characterisation of Herschel-SPIRE flight model optical performances

机译:Herschel-SPIRE飞行模型光学性能的表征

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The Spectral and Photometric Imaging Receiver (SPIRE) is one of three scientific instruments on ESA's Herschel Space Observatory. This long wavelength instrument covers 200 to 670μm with a three band photometric camera and a two band imaging Fourier Transform Spectrometer (IFTS). Following first results reported in a previous paper, we discuss the in-band optical performances of the flight model as measured extensively during several dedicated test campaigns. Complementary to the experimentally probed spectral characteristics of the instrument detailed in an accompanying paper (see L.D. Spencer et al., in these proceedings), attention is focused here on a set of standard but key tests aimed at measuring the spatial response of the Photometer and Spectrometer end-to-end optical chain, including detector. Effects of defocus as well as source size extent, in-band wavelength, and polarization are also investigated over respective Photometer and Spectrometer field-of-views. Comparison with optical modelling, based on instrument design knowledge and some of the internal component measured characteristics, is performed. Beyond the specific characterisation of each effect, this allows estimating in each band where optical behaviour and detector behaviour respectively dominates and also reconstructing some of the contributors to the instrument throughput. Based on this analysis, retrieved optical performances are finally assessed against the related science-driven instrument requirements.
机译:光谱和光度成像接收器(SPIRE)是ESA赫歇尔太空天文台的三项科学仪器之一。这款长波长仪器使用三波段光度相机和两波段成像傅里叶变换光谱仪(IFTS)覆盖200至670μm。在前一篇论文中报道的第一批结果之后,我们讨论了在几个专门的测试活动中广泛测量的飞行模型的带内光学性能。与随附论文中详细介绍的该仪器的实验探测光谱特性互补(请参见LD Spencer等人,在这些程序中),这里的注意力集中在旨在测量光度计的空间响应的一组标准但关键的测试上。光谱仪端对端光学链,包括检测器。还分别在光度计和光谱仪的视场上研究了散焦以及光源尺寸范围,带内波长和偏振的影响。基于仪器设计知识和一些内部组件测量特性,与光学建模进行了比较。除了每种效应的特定表征之外,这还可以估算出光学行为和检测器行为分别占主导地位的每个波段,并且还可以重构一些影响仪器通量的因素。基于此分析,最终将根据相关科学驱动的仪器要求对检索到的光学性能进行评估。

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