{"title":"Discovery of a damped Lyα absorber in the circumnuclear zone of the FeLoBAL quasar SDSS J083942.11+380526.3","authors":"Shengmiao Wu, Xiheng Shi, Nibedita Kalita, Xiang Pan, Qiguo Tian, T. Ji, Shaohua Zhang, Xuejie Dai, Peng Jiang, Chenwei Yang, Hongyan Zhou","doi":"10.1093/mnras/stae1728","DOIUrl":null,"url":null,"abstract":"\n SDSS J083942.11+380526.3 (z = 2.315) is a FeLoBAL quasar that exhibits visible Balmer absorption lines (Hα), implying a significant n = 2 population. The quasar also shows an array of absorption lines, including O I, Ni II, Fe II, Mg II, Al III to C IV and N V. The high-ionization absorption lines such as C IV and Si IV are revealed by slightly blueshifted BAL troughs. The resonance doublets such as Mg II and Al III are saturated but did not reached zero intensity which indicates that the BLR is partially covered. Overall, however, the absorption is predominantly from low-ionization Fe II lines, emitted from ground and excited states up to at least 3.814 eV. This implies that the absorbing gas spans the hydrogen ionization front and extends into the partially ionized zone where neutral hydrogen is certainly present. Notably, the hydrogen line spectrum of the quasar shows no signature of expected Lyα absorption. Instead, the line spectrum shows an unusual Lyα emission characterized by a fully filled emission line spectrum which is a composite of a strong narrow core superposed on a weak broad base. Taking into account the effect of partial covering to BLR, we have extracted a strong DLA trough in Lyα emission region. To fit the spectrum, we performed photoionized model calculations and compared them to the observations. We found that photoionization modeling using CLOUDY can successfully reproduce the main characteristics of the quasar spectrum, and the predicted neutral hydrogen column density arising from the clouds responsible for the low-ionization absorption provides a good match to the extracted DLA trough. This indicates that both the DLA and the low-ionization absorption arise from the same medium that is roughly collocated with the dusty torus.","PeriodicalId":506975,"journal":{"name":"Monthly Notices of the Royal Astronomical Society","volume":"3 4","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2024-07-16","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Monthly Notices of the Royal Astronomical Society","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.1093/mnras/stae1728","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
Abstract
SDSS J083942.11+380526.3 (z = 2.315) is a FeLoBAL quasar that exhibits visible Balmer absorption lines (Hα), implying a significant n = 2 population. The quasar also shows an array of absorption lines, including O I, Ni II, Fe II, Mg II, Al III to C IV and N V. The high-ionization absorption lines such as C IV and Si IV are revealed by slightly blueshifted BAL troughs. The resonance doublets such as Mg II and Al III are saturated but did not reached zero intensity which indicates that the BLR is partially covered. Overall, however, the absorption is predominantly from low-ionization Fe II lines, emitted from ground and excited states up to at least 3.814 eV. This implies that the absorbing gas spans the hydrogen ionization front and extends into the partially ionized zone where neutral hydrogen is certainly present. Notably, the hydrogen line spectrum of the quasar shows no signature of expected Lyα absorption. Instead, the line spectrum shows an unusual Lyα emission characterized by a fully filled emission line spectrum which is a composite of a strong narrow core superposed on a weak broad base. Taking into account the effect of partial covering to BLR, we have extracted a strong DLA trough in Lyα emission region. To fit the spectrum, we performed photoionized model calculations and compared them to the observations. We found that photoionization modeling using CLOUDY can successfully reproduce the main characteristics of the quasar spectrum, and the predicted neutral hydrogen column density arising from the clouds responsible for the low-ionization absorption provides a good match to the extracted DLA trough. This indicates that both the DLA and the low-ionization absorption arise from the same medium that is roughly collocated with the dusty torus.
SDSS J083942.11+380526.3(z = 2.315)是一颗FeLoBAL类星体,它显示出可见的巴尔默吸收线(Hα),这意味着有一个重要的n = 2种群。该类星体还显示出一系列吸收线,包括 O I、Ni II、Fe II、Mg II、Al III 到 C IV 和 N V。Mg II 和 Al III 等共振双线已经饱和,但强度并没有达到零,这表明 BLR 被部分覆盖。不过,总的来说,吸收主要来自低电离铁Ⅱ线,它们由基态和激发态发射,至少高达 3.814 eV。这意味着吸收气体跨越了氢离子化前沿,并延伸到了部分电离区,在那里肯定存在中性氢。值得注意的是,类星体的氢线光谱没有显示出预期的 Lyα 吸收。相反,该线谱显示出一种不寻常的 Lyα 发射,其特点是发射线谱完全填充,是一个强窄核心叠加一个弱宽基底的复合体。考虑到 BLR 部分覆盖的影响,我们在 Lyα 发射区域提取了一个强 DLA 波谷。为了拟合光谱,我们进行了光离子化模型计算,并与观测结果进行了比较。我们发现,利用 CLOUDY 进行的光离子化建模能够成功地再现类星体光谱的主要特征,而由云团引起的低电离吸收所预测的中性氢柱密度与提取的 DLA 波谷非常吻合。这表明,DLA 和低电离吸收都来自同一种介质,而这种介质与尘埃环大致位于同一位置。