IRAS 和 SDSS 勘测中的超亮度红外星系比较研究

Shaohua Zhang, Zhijian Luo, Xiheng Shi, Chenggang Shu, Hubing Xiao, Hongyan Zhou
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摘要

我们利用红外天文卫星微弱源目录和斯隆数字巡天数据第16版中的光谱目录中的数据,对超亮度红外星系(ULIRG)进行了全面研究。我们细致入微的交叉匹配技术大大提高了 ULIRG 识别的可靠性,最终识别出 283 个可靠的 ULIRG,其中包括 102 个新发现的 ULIRG,同时剔除了 120 个之前报告的虚假来源。我们的统一样本覆盖了 z = 0.018-0.996 的红移范围,中位红移为 z¯=0.259,在大约 40% 的超红外天体中发现了明显的相互作用特征,在 z < 0.1 的超红外天体中,这一比例上升到 92%。通过光学光谱分析,我们发现超过58%的超红外天体中存在活动星系核(AGN),是仅根据红外光谱探测到的活动星系核的两倍。此外,与 AGN 活动相关的射电辐射明显过剩,导致射电-远红外相关性更加陡峭。值得注意的是,I型超红外巨星表现出了与窄线赛弗1星系类似的特性,Mg ii宽吸收线的入射率很高(16.7%),比典型的光学选择类星体的入射率高出10倍以上,这与当前的演化模型是一致的。我们预计,中国空间站望远镜和莱顿-恰南托尔望远镜等即将投入使用的望远镜将为ULIRG的形态、尘埃分布、分子气体和AGN活动提供更深入的见解。
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A Comparative Study of Ultraluminous Infrared Galaxies in the IRAS and SDSS Surveys
We present a comprehensive study of ultraluminous infrared galaxies (ULIRGs), leveraging data from the Infrared Astronomical Satellite Faint Source Catalogue and the spectroscopic catalog in the Sloan Digital Sky Survey Data Release 16. Our meticulous crossmatching technique significantly enhances the reliability of ULIRG identification, resulting in the identification of 283 reliable ULIRGs, including 102 new detections, while discarding 120 previously reported false sources. Covering a redshift range of z = 0.018–0.996, with a median redshift of z¯=0.259 , our uniform sample reveals apparent interaction features in approximately 40% of ULIRGs, increasing to 92% for those with z < 0.1. Through optical spectra analysis, it is indicated that over 58% of ULIRGs host an active galactic nucleus (AGN), which is twice as high as detections based solely on infrared colors. Moreover, a pronounced excess of radio emissions associated with AGN activity results in a steeper radio–far-infrared correlation. Notably, Type I ULIRGs exhibit properties similar to those of narrow-line Seyfert 1 galaxies, with an elevated incidence rate of Mg ii broad absorption lines (16.7%), surpassing that of typical optically selected quasars by over tenfold, consistent with current evolutionary models. We anticipate that forthcoming telescopes such as the China Space Station Telescope and Leighton Chajnantor Telescope will provide deeper insights into ULIRG morphology, dust distribution, molecular gas, and AGN activity.
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