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Fireball Multi Object Spectrograph: As-built optic performances

机译:火球多对象光谱仪:竣工光学表演

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Fireball (Faint Intergalactic Redshifted Emission Balloon) is a NASA/CNES balloon-borne experiment to study the faint diffuse circumgalactic medium from the line emissions in the ultraviolet (200 nm) above 37 km flight altitude. Fireball relies on a Multi Object Spectrograph (MOS) that takes full advantage of the new high QE, low noise 13 μm pixels UV EMCCD. The MOS is fed by a 1 meter diameter parabola with an extended field (1000 arcmin~2) using a highly aspherized two mirror corrector. All the optical train is working at F/2.5 to maintain a high signal to noise ratio. The spectrograph (R~2200 and 1.5 arcsec FWHM) is based on two identical Schmidt systems acting as collimator and camera sharing a 2400 g/mm aspherized reflective Schmidt grating. This grating is manufactured from active optics methods by double replication technique of a metal deformable matrix whose active clear aperture is built-in to a rigid elliptical contour. The payload and gondola are presently under integration at LAM. We will present the alignment procedure and the as-built optic performances of the Fireball instrument.
机译:火球(微弱的Contgalactic Redshifted Amaxion Balloon)是NASA / CNES Balloon-Forne实验,以研究紫外线(200nm)的线排放中的微弱漫反射型介质,以上37 km飞行高度。火球依赖于多对象光谱仪(MOS),该谱仪充分利用新的高QE,低噪声13μm像素UV EMCCD。 MOS由1米直径的抛物线喂食,使用高度冒光的两个镜面校正器,具有延伸的场(1000个Arcmin〜2)。所有光学系都在F / 2.5工作,以保持高信噪比。光谱仪(R〜2200和1.5 ArcSEC FWHM)基于两个相同的施密特系统,作为准直器和相机共用2400克/ mm非球面反射施密光栅。该光栅由主动光学方法制造,通过金属可变形基质的双重复制技术制造,其主动透明孔置于刚性椭圆形轮廓。有效载荷和缆车目前正在林的整合下。我们将介绍Fireball仪器的一致性程序和竣工光学表演。

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