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Prototyping of Cryomechanisms for the JWST Near-Infra-Red Spectrograph (NIRSpec)

机译:JWST近红外线光谱仪(NIRSPEC)的冷冻机制原型

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In 2011 NASA and ESA plan to launch the James Webb Space Telescope (JWST) as dignified successor of the Hubble Space Telescope. Three scientific instruments will cover the wavelength regions in the near-infrared (0.6-5 μm, NIRCam and NIRSpec) and in the mid-infrared (5-28 μm, MIRI), respectively. The ESA-led multi-object spectrograph NIRSpec as major European contribution is presently entering the detailed design phase in a collaboration between European space industries, scientific institutes, ESA and NASA. To allow for various operational modes in the instrument's optical train several cryo-mechanisms are required, i.e. wheels for exchanging optical elements like filters and gratings as well as linear actuators on refocusing mirrors. We will give an overview on the detailed design, the prototyping and the testing of those mechanisms comprising highest reliability in the cryo-vacuum (~35K) combined with minimal power dissipation (~ 5mW on average), ultimate position accuracy (~ 0.5 - larcsec) combined with high launch vibration capability (ARIANE 5, ~ 60g) and a very long lifetime (~ 15 years) for ground tests and space operation under various environmental conditions. To reach this goal in a low cost and risk approach we rely on the heritage from ESA's earlier infrared missions, i.e. ISO and HERSCHEL.
机译:2011年美国宇航局和ESA计划将James Webb Space Telescope(JWST)作为哈勃太空望远镜的抗尊地推动。三种科学仪器将分别覆盖近红外(0.6-5μm,Nircam和Nirspec)和中红外(5-28μm,miri)中的波长区域。 ESA-LED的多物体光谱仪NIRSPEC作为主要欧洲贡献目前在欧洲航天行业,科学机构,ESA和NASA之间的合作中进入详细的设计阶段。为了允许仪器的光学系列中的各种操作模式,需要多个冷冻机构,即用于更换滤光器和光栅的光学元件的轮子以及在重新聚焦镜上的线性致动器。我们将概述详细设计,原型设计和对那些机制的测试,包括低温真空(〜35K)的最高可靠性,结合最小的功耗(平均〜5MW),最终的位置精度(〜0.5 - LARCSEC )结合高发射振动能力(Ariane 5,〜60g)和在各种环境条件下进行地面测试和空间运行的非常长的寿命(〜15岁)。以低成本和风险方法达到这一目标,我们依靠ESA早期红外任务的遗产,即ISO和Herschel。

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