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首页> 外文期刊>Icarus: International Journal of Solar System Studies >Remote detection of past habitability at Mars-analogue hydrothermal alteration terrains using an ExoMars Panoramic Camera emulator
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Remote detection of past habitability at Mars-analogue hydrothermal alteration terrains using an ExoMars Panoramic Camera emulator

机译:使用ExoMars全景相机模拟器远程检测火星模拟热液蚀变地形的过去可居住性

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A major scientific goal of the European Space Agency's ExoMars 2018 rover is to identify evidence of life within the martian rock record. Key to this objective is the remote detection of geological substrates that are indicative of past habitable environments, which will rely on visual (stereo wide-angle, and high resolution images) and multispectral (440-1000 nm) data produced by the Panoramic Camera (PanCam) instrument. We deployed a PanCam emulator at four hydrothermal sites in the Namafjall volcanic region of Iceland, a Mars-analogue hydrothermal alteration terrain. At these sites, sustained acidic-neutral aqueous interaction with basaltic substrates (crystalline and sedimentary) has produced phyllosilicate, ferric oxide, and sulfate-rich alteration soils, and secondary mineral deposits including gypsum veins and zeolite amygdales. PanCam emulator datasets from these sites were complemented with (i) NERC Airborne Research and Survey Facility aerial hyperspectral images of the study area; (ii) in situ reflectance spectroscopy (400-1000 nm) of PanCam spectral targets; (iii) laboratory X-ray Diffraction, and (iv) laboratory VNIR (350-2500 nm) spectroscopy of target samples to identify their bulk mineralogy and spectral properties. The mineral assemblages and palaeoenvironments characterised here are analogous to neutral-acidic alteration terrains on Mars, such as at Mawrth Vallis and Gusev Crater. Combined multispectral and High Resolution Camera datasets were found to be effective at capturing features of astrobiological importance, such as secondary gypsum and zeolite mineral veins, and phyllosilicate-rich substrates. Our field observations with the PanCam emulator also uncovered stray light problems which are most significant in the NIR wavelengths and investigations are being undertaken to ensure that the flight model PanCam cameras are not similarly affected. (C) 2015 The Authors. Published by Elsevier Inc.
机译:欧洲航天局2018年ExoMars漫游车的主要科学目标是识别火星岩石记录中的生命证据。该目标的关键是对指示过去可居住环境的地质基质进行远程检测,这将依赖于全景相机产生的视觉(立体广角和高分辨率图像)和多光谱(440-1000 nm)数据( PanCam)乐器。我们在冰岛Namafjall火山区(火星模拟热液蚀变地形)的四个热液场处部署了PanCam仿真器。在这些地点,持续的酸性-中性水与玄武质基质(晶体和沉积物)的相互作用产生了页硅酸盐,氧化铁和富含硫酸盐的蚀变土壤,以及包括石膏脉和杏仁状沸石在内的次生矿床。这些地点的PanCam模拟器数据集得到了补充(i)研究区域的NERC机载研究和测量设施空中高光谱图像; (ii)PanCam光谱目标的原位反射光谱(400-1000 nm); (iii)实验室X射线衍射,和(iv)目标样品的实验室VNIR(350-2500 nm)光谱,以确定其总体矿物学和光谱特性。这里表征的矿物组合和古环境类似于火星上的中性酸性蚀变地形,例如莫尔斯·瓦利斯(Mawrth Vallis)和古塞夫火山口(Gusev Crater)。研究人员发现,结合使用多光谱和高分辨率相机数据集可以有效捕获具有生物学重要性的特征,例如次生石膏和沸石矿脉以及富含页硅酸盐的基质。我们使用PanCam模拟器进行的实地观察还发现了杂散光问题,这些问题在NIR波长中最为严重,并且正在进行调查以确保飞行模型PanCam摄像机不会受到类似的影响。 (C)2015作者。由Elsevier Inc.发布

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