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用于贝皮科伦坡水星探测任务的SIMBIO-SYS/VIHI成像光谱仪发射前特性分析。I. 线性度、辐射度和几何校准。

The pre-launch characterization of SIMBIO-SYS/VIHI imaging spectrometer for the BepiColombo mission to Mercury. I. Linearity, radiometry, and geometry calibrations.

作者信息

Filacchione Gianrico, Capaccioni Fabrizio, Altieri Francesca, Carli Cristian, Ficai Veltroni Iacopo, Dami Michele, Tommasi Leonardo, Aroldi Gianluca, Borrelli Donato, Barbis Alessandra, Baroni Marco, Pastorini Guia, Mugnuolo Raffaele

机构信息

INAF-IAPS, Istituto di Astrofisica e Planetologia Spaziali, via del Fosso del Cavaliere, 100, 00133 Rome, Italy.

Leonardo Company, via delle Officine Galileo, 1, 50013 Florence, Campi Bisenzio, Italy.

出版信息

Rev Sci Instrum. 2017 Sep;88(9):094502. doi: 10.1063/1.4989968.

DOI:10.1063/1.4989968
PMID:28964236
Abstract

Before integration aboard European Space Agency BepiColombo mission to Mercury, the visible and near infrared hyperspectral imager underwent an intensive calibration campaign. We report in Paper I about the radiometric and linearity responses of the instrument including the optical setups used to perform them. Paper II [F. Altieri et al., Rev. Sci. Instrum. 88, 094503 (2017)] will describe complementary spectral response calibration. The responsivity is used to calculate the expected instrumental signal-to-noise ratio for typical observation scenarios of the BepiColombo mission around Mercury. A description is provided of the internal calibration unit that will be used to verify the relative response during the instrument's lifetime. The instrumental spatial response functions as measured along and across the spectrometer's slit direction were determined by means of spatial scans performed with illuminated test slits placed at the focus of a collimator. The dedicated optical setup used for these measurements is described together with the methods used to derive the instrumental spatial responses at different positions within the 3.5 field of view and at different wavelengths in the 0.4-2.0 μm spectral range. Finally, instrument imaging capabilities and Modulated Transfer Function are tested by using a standard mask as a target.

摘要

在搭载欧洲航天局贝皮科伦坡水星任务之前,可见光和近红外高光谱成像仪经历了一次密集的校准活动。我们在论文I中报告了该仪器的辐射度和线性响应,包括用于进行这些响应测量的光学装置。论文II [F. 阿尔蒂耶里等人,《科学仪器评论》88, 094503 (2017)] 将描述互补光谱响应校准。响应度用于计算贝皮科伦坡任务在水星周围典型观测场景下仪器的预期信噪比。文中介绍了将用于在仪器使用寿命期间验证相对响应的内部校准单元。通过使用放置在准直仪焦点处的照明测试狭缝进行空间扫描,确定了沿光谱仪狭缝方向以及垂直于狭缝方向测量的仪器空间响应函数。描述了用于这些测量的专用光学装置,以及用于推导在3.5视场内不同位置和0.4 - 2.0μm光谱范围内不同波长处仪器空间响应的方法。最后,使用标准掩模作为目标测试了仪器的成像能力和调制传递函数。

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