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An integrated payload design for the Atmospheric Remote-sensing Infrared Exoplanet Large-survey (ARIEL)

机译:大气遥感红外系外行星大调查(ARIEL)的集成有效载荷设计

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ARIEL (the Atmospheric Remote-sensing Infrared Exoplanet Large-survey) is one of the three candidates for the next ESA medium-class science mission (M4) expected to be launched in 2026. This mission will be devoted to observing spectroscopically in the infrared a large population of warm and hot transiting exoplanets (temperatures from ~500 K to ~3000 K) in our nearby Galactic neighborhood, opening a new discovery space in the field of extrasolar planets and enabling the understanding of the physics and chemistry of these far away worlds. The three candidate missions for M4 are now in a Phase A study which will run until mid-2017 at which point one mission will be selected for implementation. ARIEL is based on a 1-m class telescope feeding both a moderate resolution spectrometer covering the wavelengths from 1.95 to 7.8 microns, and a four channel photometer (which also acts as a Fine Guidance Sensor) with bands between 0.55 and 1.65 microns. During its 3.5 years of operation from an L2 orbit, ARIEL will continuously observe exoplanets transiting their host star. This paper presents the overall view of the integrated design of the payload which is proposed for this mission. It tightly integrates the various payload elements in order to allow the exacting photometric stability targets to be met while providing simultaneous spectral and photometric data from the visible to the mid-infrared. We identify and discuss the key requirements and technical challenges for the payload and address the trade-offs that we are undertaking. We will show how we will produce a fully integrated and calibrated payload for ARIEL that can be built within the mission and programmatic constraints and will meet the challenging scientific performance required for transit spectroscopy.
机译:ARIEL(大气遥感红外系外行星大型调查)是预计于2026年启动的下一次ESA中级科学任务(M4)的三项候选任务之一。该任务将致力于在红外光谱中进行光谱观测。我们附近的银河系附近有大量的热和热过运系外行星(温度从〜500 K到〜3000 K),在太阳系外行星领域开辟了新的发现空间,并使人们能够了解这些遥远世界的物理和化学。 M4的三个候选任务现在处于A期研究,该研究将持续到2017年中期,届时将选择一个任务进行实施。 ARIEL基于1-m类望远镜,既可提供覆盖1.95至7.8微米波长的中分辨率光谱仪,又可提供带状光谱介于0.55至1.65微米之间的四通道光度计(也可作为精细制导传感器)。在从L2轨道运行3.5年的过程中,ARIEL将不断观察系外行星经过其宿主恒星的过程。本文介绍了为此任务建议的有效载荷集成设计的整体视图。它紧密集成了各种有效负载元素,以便满足严格的光度稳定性目标,同时提供从可见光到中红外的同时光谱和光度数据。我们确定并讨论有效载荷的关键要求和技术挑战,并解决我们正在进行的折衷方案。我们将展示如何为ARIEL生产完全集成并经过校准的有效载荷,该有效载荷可以在任务和计划约束范围内构建,并能满足运输光谱学所要求的具有挑战性的科学性能。

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