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超级相机校准目标:设计与开发

SuperCam Calibration Targets: Design and Development.

作者信息

Manrique J A, Lopez-Reyes G, Cousin A, Rull F, Maurice S, Wiens R C, Madsen M B, Madariaga J M, Gasnault O, Aramendia J, Arana G, Beck P, Bernard S, Bernardi P, Bernt M H, Berrocal A, Beyssac O, Caïs P, Castro C, Castro K, Clegg S M, Cloutis E, Dromart G, Drouet C, Dubois B, Escribano D, Fabre C, Fernandez A, Forni O, Garcia-Baonza V, Gontijo I, Johnson J, Laserna J, Lasue J, Madsen S, Mateo-Marti E, Medina J, Meslin P-Y, Montagnac G, Moral A, Moros J, Ollila A M, Ortega C, Prieto-Ballesteros O, Reess J M, Robinson S, Rodriguez J, Saiz J, Sanz-Arranz J A, Sard I, Sautter V, Sobron P, Toplis M, Veneranda M

机构信息

Unidad Asocida UVA-CSIC-CAB, University of Valladolid (UVA), Valladolid, Spain.

Institut de Recherche en Astrophysique et Planétologie (IRAP), CNRS, CNES, Université de Toulouse, Toulouse, France.

出版信息

Space Sci Rev. 2020;216(8):138. doi: 10.1007/s11214-020-00764-w. Epub 2020 Nov 26.

Abstract

SuperCam is a highly integrated remote-sensing instrumental suite for NASA's Mars 2020 mission. It consists of a co-aligned combination of Laser-Induced Breakdown Spectroscopy (LIBS), Time-Resolved Raman and Luminescence (TRR/L), Visible and Infrared Spectroscopy (VISIR), together with sound recording (MIC) and high-magnification imaging techniques (RMI). They provide information on the mineralogy, geochemistry and mineral context around the Perseverance Rover. The calibration of this complex suite is a major challenge. Not only does each technique require its own standards or references, their combination also introduces new requirements to obtain optimal scientific output. Elemental composition, molecular vibrational features, fluorescence, morphology and texture provide a full picture of the sample with spectral information that needs to be co-aligned, correlated, and individually calibrated. The resulting hardware includes different kinds of targets, each one covering different needs of the instrument. Standards for imaging calibration, geological samples for mineral identification and chemometric calculations or spectral references to calibrate and evaluate the health of the instrument, are all included in the SuperCam Calibration Target (SCCT). The system also includes a specifically designed assembly in which the samples are mounted. This hardware allows the targets to survive the harsh environmental conditions of the launch, cruise, landing and operation on Mars during the whole mission. Here we summarize the design, development, integration, verification and functional testing of the SCCT. This work includes some key results obtained to verify the scientific outcome of the SuperCam system.

摘要

SuperCam是美国国家航空航天局(NASA)“火星2020”任务中一套高度集成的遥感仪器套件。它由激光诱导击穿光谱仪(LIBS)、时间分辨拉曼光谱和发光光谱仪(TRR/L)、可见和红外光谱仪(VISIR)共同对准组合而成,同时还包括声音记录(MIC)和高倍成像技术(RMI)。它们提供有关“毅力号”火星车周围矿物学、地球化学和矿物背景的信息。对这套复杂的仪器套件进行校准是一项重大挑战。不仅每种技术都需要其自身的标准或参考物,它们的组合还带来了新的要求,以获得最佳的科学输出。元素组成、分子振动特征、荧光、形态和纹理通过需要共同对准、关联和单独校准的光谱信息,提供了样品的全貌。最终的硬件包括不同类型的目标物,每一种都满足仪器的不同需求。成像校准标准、用于矿物识别和化学计量计算的地质样品,或用于校准和评估仪器状态的光谱参考物,都包含在SuperCam校准目标(SCCT)中。该系统还包括一个专门设计的样品安装组件。这种硬件使目标物能够在整个任务期间承受火星发射、巡航、着陆和运行时的恶劣环境条件。在这里,我们总结了SCCT的设计、开发、集成、验证和功能测试。这项工作包括为验证SuperCam系统的科学成果而获得的一些关键结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/34c0/7691312/3a8087af0fcb/11214_2020_764_Fig1_HTML.jpg

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