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Cross-calibration of far UV spectra of solar system objects and the heliosphere

机译:太阳系物体和太阳圈的远紫外光谱的交叉校准

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摘要

This book is the result of a working group sponsored by ISSI in Bern, which was initially created to study possible ways to calibrate a Far Ultraviolet (FUV) instrument after launch. In most cases, ultraviolet instruments are well calibrated on the ground, but unfortunately, optics and detectors in the FUV are very sensitive to contaminants and it is very challenging to prevent contamination before and during the test and launch sequences of a space mission. Therefore, ground calibrations need to be confirmed after launch and it is necessary to keep track of the temporal evolution of the sensitivity of the instrument during the mission. The studies presented here cover various fields of FUV spectroscopy with the exclusion of direct solar UV spectroscopy, including a catalog of stellar spectra, data-sets of lunar Irradiance, observations of comets and measurements of the interplanetary background. Detailed modeling of the interplanetary background is presented as well. This work also includes comparisons of older data-sets with current ones. This raises the question of the consistency of the existing data-sets. Previous experiments have been calibrated independently and comparison of the data-sets may lead to inconsistencies. The authors have tried to check that possibility in the data-sets and when relevant, suggest a correction factor for the corresponding data.
机译:本书是由ISSI在伯尔尼发起的工作组的成果,该工作组的创建最初是为了研究发射后校准远紫外线(FUV)仪器的可能方法。在大多数情况下,紫外线仪器在地面上已进行了很好的校准,但是不幸的是,FUV中的光学器件和检测器对污染物非常敏感,要在太空任务的测试和发射序列之前和期间防止污染非常具有挑战性。因此,发射后需要确认地面校准,并且有必要在任务期间跟踪仪器灵敏度的时间变化。本文介绍的研究涵盖了FUV光谱学的各个领域,但不包括直接太阳紫外线光谱学,包括恒星光谱目录,月球辐照度数据集,彗星观测和星际背景测量。还介绍了行星际背景的详细建模。这项工作还包括将旧数据集与当前数据集进行比较。这就提出了现有数据集一致性的问题。先前的实验已经过独立校准,数据集的比较可能会导致不一致。作者试图检查数据集中的可能性,并在相关时建议相应数据的校正因子。

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