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来自星系演化探测器(GALEX)巡天的新紫外线源目录、紫外线光谱数据库、紫外线变星及科学工具。

New UV-source catalogs, UV spectral database, UV variables and science tools from the GALEX surveys.

作者信息

Bianchi Luciana, de la Vega Alexander, Shiao Bernard, Bohlin Ralph

机构信息

1Department of Physics and Astronomy, The Johns Hopkins University, Baltimore, MD 21210 USA.

2Space Telescope Science Institute, Baltimore, USA.

出版信息

Astrophys Space Sci. 2018;363(3):56. doi: 10.1007/s10509-018-3277-2. Epub 2018 Feb 28.

Abstract

We present a new, expanded and improved catalog of Ultraviolet (UV) sources from the GALEX All-Sky Imaging survey: GUVcat_AIS (Bianchi et al. in Astrophys. J. Suppl. Ser. 230:24, 2017). The catalog includes 83 million unique sources (duplicate measurements and rim artifacts are removed) measured in far-UV and near-UV. With respect to previous versions (Bianchi et al. in Mon. Not. R. Astron. Soc. 411:2770 2011a, Adv. Space Res. 53:900-991, 2014), GUVcat_AIS covers a slightly larger area, 24,790 square degrees, and includes critical corrections and improvements, as well as new tags, in particular to identify sources in the footprint of extended objects, where pipeline source detection may fail and custom-photometry may be necessary. The UV unique-source catalog facilitates studies of density of sources, and matching of the UV samples with databases at other wavelengths. We also present first results from two ongoing projects, addressing respectively UV variability searches on time scales from seconds to years by mining the GALEX photon archive, and the construction of a database of ∼120,000 GALEX UV spectra (range ∼1300-3000 Å), including quality and calibration assessment and classification of the grism, hence serendipitous, spectral sources.

摘要

我们展示了一份来自GALEX全天成像巡天的紫外线(UV)源的全新、扩展且改进的目录:GUVcat_AIS(Bianchi等人,《天体物理学杂志增刊》第230卷:24,2017年)。该目录包含8300万个在远紫外和近紫外波段测量的独特源(已去除重复测量和边缘伪影)。与之前的版本(Bianchi等人,《皇家天文学会月报》第411卷:2770,2011年a;《空间研究进展》第53卷:900 - 991,2014年)相比,GUVcat_AIS覆盖的面积略大,为24790平方度,并且包括关键的修正和改进,以及新的标签,特别是用于识别扩展物体足迹中的源,在这些地方管道源检测可能会失败,可能需要进行定制测光。紫外线独特源目录有助于源密度研究以及紫外线样本与其他波长数据库的匹配。我们还展示了两个正在进行的项目的初步结果,分别是通过挖掘GALEX光子存档来研究从秒到年时间尺度上的紫外线变异性,以及构建一个包含约120000条GALEX紫外线光谱(范围约1300 - 3000埃)的数据库,包括对棱镜光谱的质量、校准评估和分类,即偶然的光谱源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c226/6566205/8167da7dcef2/10509_2018_3277_Fig1_HTML.jpg

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