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VIS-NIR Imaging Spectroscopy of Mercury's Surface: SIMBIO-SYS/VIHI Experiment Onboard the BepiColombo Mission

机译:水星表面的VIS-NIR成像光谱:BepiColombo任务上的SIMBIO-SYS / VIHI实验

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The Visible and Infrared Hyperspectral Imager (VIHI) is one of the three optical heads of the Spectrometers and Imagers for MPO BepiColombo Integrated Observatory SYStem (SIMBIO-SYS) experiment onboard European Space Agency's BepiColombo cornerstone mission to Mercury. The other two optical heads of SIMBIO-SYS are a stereo camera and a high-resolution image camera. The experiment is designed to scan the Hermean surface from a polar orbit with the three channels to map the physical, morphological, tectonic, and compositional properties of the planet. The main scientific objectives of SIMBIO-SYS are the study of Mercury's surface geology and stratigraphy, the surface composition, the regolith properties, the crustal differentiation, impact, and volcanic processes. The VIHI experiment uses a high-performance optical layout (Schmidt telescope and spectrometer in Littrow configuration) which allows investigating the 400–2000-nm spectral range with 256 spectral channels (6.25 nm/band sampling). The instrument has an instrument field of view (FOV) of 250 $muhbox{rad}$ corresponding to a spatial scale of about 100 m/pixel at periherm and 375 m at apoherm. The instrument operates in pushbroom configuration, sampling the surface of Mercury with an FOV of 64 $times$ 0.25 mrad. The main technical challenges of this experiment are focal-plane design (cadmium–mercury–telluride thinned to improve the efficiency at visible wavelengths), short dwell time (from about 40 ms at equator to about 100 ms at poles), thermal control, mechanical miniaturization, radiation hardening, high data rate, and compression. A description of the internal calibration unit concept and functionalities is given.
机译:可见光和红外高光谱成像仪(VIHI)是MPO BepiColombo综合天文台系统(SIMBIO-SYS)实验的光谱仪和成像仪的三个光学头之一,它是欧洲航天局对水星进行的BepiColombo基石飞行任务。 SIMBIO-SYS的其他两个光学头是立体声相机和高分辨率图像相机。该实验旨在通过三个通道从极地轨道扫描Hermean表面,以绘制行星的物理,形态,构造和成分特征图。 SIMBIO-SYS的主要科学目标是研究水星的表面地质和地层学,表面成分,重膏石特性,地壳分异,撞击和火山过程。 VIHI实验使用高性能的光学布局(Littrow配置的施密特望远镜和光谱仪),可以研究带有256个光谱通道(6.25 nm /波段采样)的400-2000 nm光谱范围。该仪器的仪器视场(FOV)为250μhbox{rad} $,对应于在其周围的空间比例约为100 m /像素,而在周围的空间比例约为375 m。该仪器采用推扫式配置,以64乘以0.25 mrad的FOV采样水星表面。该实验的主要技术挑战是焦平面设计(减薄镉-汞-碲化物以提高在可见波长下的效率),短的停留时间(从赤道约40ms到两极约100ms),热控制,机械小型化,辐射硬化,高数据速率和压缩。给出了内部校准单元概念和功能的描述。

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