平面类星体测量首次数据发布

Jessica Werk, Kirill Tchernyshyov, Hannah Bish, Yong Zheng, Mary Putman, Joshua Peek and David Schiminovich
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引用次数: 0

摘要

我们展示了 305 个 ∣b∣ < 30° 的 QSO 候选样本,其中大部分的 GALEX 星等在紫外附近 < 18.75。为了生成这个样本,我们将紫外-红外颜色选择标准应用到作为GALEX-CAUSE一部分的紫外银河系平面巡天、百万类星体目录、Gaia DR2和Pan-STARRS DR1的测光数据中。在这 305 个候选紫外明亮活动星系核(AGN,占 54%)中,有 165 个已经公布了来自 45 个不同巡天观测的光谱红移,证实它们是 AGN。我们进一步利用阿帕奇角天文台 3.5 米、MDM 2.4 米和 MDM 1.3 米望远镜获得了其中 84 个候选星系的低色散光学长缝光谱,并确认其中 86% (N = 72)为 AGN,通常 z < 0.6。在这72个被确认的AGN中,有25个是新发现的低纬度QSO,之前没有任何光谱分析。这些星源填补了现有已知紫外亮QSO背景探测样本在银河系纬度覆盖范围上的空白。在描述已确认的QSO特性的同时,我们还通过空间望远镜米库尔斯基档案(Mikulski Archive for Space Telescopes)提供了72个低纬度QSO的完全缩小、通量和波长校准光谱。未来哈勃空间望远镜/宇宙起源摄谱仪对这些低银河纬度 QSO 的光谱分析有可能改变我们对银河系和本星系环银河介质的看法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Plane Quasar Survey: First Data Release
We present a sample of 305 QSO candidates having ∣b∣ < 30°, the majority with GALEX magnitudes near-UV < 18.75. To generate this sample, we apply UV–IR color selection criteria to photometric data from the Ultraviolet Galactic Plane Survey as part of GALEX-CAUSE, the Million Quasars Catalog, Gaia DR2, and Pan-STARRS DR1. 165 of these 305 candidate UV-bright active galactic nuclei (AGN; 54%) have published spectroscopic redshifts from 45 different surveys, confirming them as AGN. We further obtained low-dispersion, optical, long-slit spectra with the Apache Point Observatory 3.5 m, MDM 2.4 m, and MDM 1.3 m telescopes for 84 of the candidates, and confirm 86% (N = 72) as AGN, generally with z < 0.6. Of these 72 confirmed AGN, 25 are newly discovered low-latitude QSOs without any previous spectroscopy. These sources fill a gap in the Galactic latitude coverage of the available samples of known UV-bright QSO background probes. Along with a description of the confirmed QSO properties, we provide the fully reduced, flux- and wavelength-calibrated spectra of 72 low-latitude QSOs through the Mikulski Archive for Space Telescopes. Future Hubble Space Telescope/Cosmic Origins Spectrograph spectroscopy of these low-Galactic-latitude QSOs has the potential to transform our view of the Milky Way and Local Group circumgalactic medium.
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