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Flight Model Performance of the Integral Field Unit for the James Webb Space Telescope's Near-Infrared Spectrograph

机译:詹姆斯·韦伯太空望远镜近红外光谱仪积分场单元的飞行模型性能

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The Near Infrared Spectrograph (NIRSpec) developed by EADS Astrium GmbH for the European Space Agency (ESA) is a spectrograph covering the 0.6-5.0 um waveband to fly on the James Webb Space Telescope (JWST). NIRSpec will be primarily operated as a multi-object spectrograph but also includes an integral field unit (IFU) allowing a 3x3 arcsec field of view to be sampled continuously with 0.1 arcsec spatial resolution. The IFU, based on an advanced image slicer concept, is a very compact athermal unit made of aluminium. It contains three 30-element monolithic mirror arrays forming slicer, pupil and slit mirrors, and single-surface image relay and plane fold mirrors, produced using 5-axis diamond-machining techniques. Many of the mirrors have complex surfaces like toric sections with 3rd-order corrections in order to achieve the required performance within a small allowed volume, and could only have been fabricated with the most advanced free-form machining. The mechanical design accommodates the differential expansion between the aluminium IFU and its titanium parent assembly across a 250K drop to operating temperature using an isostatic mounting system. This paper presents the development of the IFU from the design and diamond-machining techniques to the optical and cryogenic testing of the assembled flight model unit.
机译:由EADS Astrium GmbH为欧洲航天局(ESA)开发的近红外光谱仪(NIRSpec)是涵盖0.6-5.0 um波段并在James Webb太空望远镜(JWST)上飞行的光谱仪。 NIRSpec将主要用作多对象光谱仪,但还将包括一个积分场单元(IFU),该单元可以以0.1 arcsec空间分辨率连续采样3x3 arcsec视场。 IFU基于先进的图像切片器概念,是一种非常紧凑的铝制无热单元。它包含三个由30个元素组成的单片反射镜阵列,分别形成切片器,光瞳和裂隙镜,以及单面图像中继镜和平面折叠镜,它们是使用5轴金刚石加工技术制成的。许多反射镜具有复杂的表面,例如具有三阶校正的复曲面部分,以便在较小的允许体积内达到所需的性能,并且只能使用最先进的自由形式加工来制造。机械设计可通过使用等静压安装系统来适应铝制IFU及其钛母体组件在250K下降至工作温度范围内的差异膨胀。本文介绍了IFU的发展,从设计和金刚石加工技术到组装飞行模型单元的光学和低温测试。

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