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The ARIEL Instrument Control Unit design: For the M4 Mission Selection Review of the ESA's Cosmic Vision Program

机译:Ariel仪器控制单元设计:对于ESA的宇宙视觉计划的M4任务选择审查

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The Atmospheric Remote-sensing Infrared Exoplanet Large-survey mission (ARIEL) (Tinetti et al. 2017) is one of the three present candidates for the ESA M4 (the fourth medium mission) launch opportunity. The proposed Payload (Eccleston et al. 2017; Morgante et al. 2017; Da Deppo et al. 2017) will perform a large unbiased spectroscopic survey from space concerning the nature of exoplanets atmospheres and their interiors to determine the key factors affecting the formation and evolution of planetary systems. ARIEL will observe a large number (500) of warm and hot transiting gas giants, Neptunes and super-Earths around a wide range of host star types, targeting planets hotter than 600 K to take advantage of their well-mixed atmospheres. It will exploit primary and secondary transits spectroscopy in the 1.2 - 8m spectral range and broad-band photometry in the optical and Near IR (NIR). The main instrument of the ARIEL Payload is the IR Spectrometer (AIRS) (Amiaux et al. 2017) providing low-resolution spectroscopy in two IR channels: Channel 0 (CH0) for the 1.95 - 3.90m band and Channel 1 (CH1) for the 3.90 - 7.80m range. It is located at the intermediate focal plane of the telescope (Da Deppo et al. 2016, 2017, 2017) and common optical system and it hosts two IR sensors and two cold front-end electronics (CFEE) for detectors readout, a well defined process calibrated for the selected target brightness and driven by the Payload's Instrument Control Unit (ICU).
机译:大气遥感红外外出外出大型调查团(Ariel)(Tinetti等,2017)是欧安全盟贸易咨询中心(第四届中等任务)推出机会的三个现任候选人之一。拟议的有效载荷(Eccleston等,2017; Morgante等,2017; Da deagpo等,2017)将从有关外部内胞间气氛的性质及其内部的空间进行大型无偏的光谱调查,以确定影响地层的关键因素行星系统的演变。 Ariel将在广泛的宿主星形类型周围观察大量(& 500)的温暖和热的过渡气体巨头,Neptunes和超地球,瞄准行星比600 k更热,以利用它们的混合氛围。它将利用在光学和近IR(NIR)中的1.2 - 8M光谱范围和宽带光度测定中的初级和二次转运光谱。 Ariel有效载荷的主仪器是IR光谱仪(AIRS)(AMIAUX等,2017),在两个红外通道中提供低分辨率光谱:1.95 - 3.90M频段和通道1(CH1)的通道0(CH0) 3.90 - 7.80米的范围。它位于望远镜的中间侧焦平面(Da Deapo等,2016,2017,2017)和普通光学系统,它占据了两个IR传感器和两个冷前端电子(CFEE),用于探测器读数,定义明确用于所选目标亮度的过程校准,并由有效载荷的仪器控制单元(ICU)驱动。

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