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Gaia Data Release 1 - Principles of the photometric calibration of the G band

机译:Gaia Data Release 1-G波段的光度校准原理

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Context. Gaia is an ESA cornerstone mission launched on 19 December 2013 aiming to obtain the most complete and precise 3D map of our Galaxy by observing more than one billion sources. This paper is part of a series of documents explaining the data processing and its results for Gaia Data Release 1, focussing on the G band photometry. Aims. This paper describes the calibration model of the Gaia photometric passband for Gaia Data Release 1. Methods. The overall principle of splitting the process into internal and external calibrations is outlined. In the internal calibration, a self-consistent photometric system is generated. Then, the external calibration provides the link to the absolute photometric flux scales. Results. The Gaia photometric calibration pipeline explained here was applied to the first data release with good results. Details are given of the various calibration elements including the mathematical formulation of the models used and of the extraction and preparation of the required input parameters (e.g. colour terms). The external calibration in this first release provides the absolute zero point and photometric transformations from the Gaia G passband to other common photometric systems. Conclusions. This paper describes the photometric calibration implemented for the first Gaia data release and the instrumental effects taken into account. For this first release no aperture losses, radiation damage, and other second-order effects have not yet been implemented in the calibration.
机译:上下文。盖亚号(Gaia)是ESA的一项基石任务,于2013年12月19日启动,旨在通过观测超过十亿个源来获得我们银河系最完整,最精确的3D地图。本文是一系列文件的一部分,解释了Gaia Data Release 1的数据处理及其结果,重点是G波段光度法。目的本文介绍了针对Gaia Data Release 1的Gaia光度通带的校准模型。方法。概述了将过程分为内部和外部校准的总体原理。在内部校准中,将生成一个自洽的测光系统。然后,外部校准提供了到绝对光度通量刻度的链接。结果。此处说明的Gaia光度校准管道已应用于第一个数据发布,效果良好。给出了各种校准元素的详细信息,包括所用模型的数学公式以及所需输入参数(例如颜色项)的提取和准备。此第一版中的外部校准提供了从Gaia G通带到其他常见光度学系统的绝对零点和光度学转换。结论。本文介绍了针对第一个Gaia数据版本实施的光度校准以及所考虑的仪器效果。对于该第一个版本,尚未在校准中实现任何孔径损失,辐射损伤和其他二阶效应。

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