论文标题
低音XXV:DR2基于宽线的黑洞质量估计和偏见的偏见
BASS XXV: DR2 Broad-line Based Black Hole Mass Estimates and Biases from Obscuration
论文作者
论文摘要
我们介绍了广泛的发射线和对超质量黑洞质量($ M_ {BH} $)的病毒估计值,以作为BAT BAT BAT AGN Spectroscic Spectroscic Spectroscic Spectroscic Spectroscopic Spectroscic Spectroscopic调查(BASS/DR2)的第二个数据释放的一部分,其中大量超高X射线X射线选择了选择的活性银河核(AGNS)。我们的目录包括$ m_ {bh} $估计,总计689个AGN,由H $α$,H $β$,$ MGII \ LAMBDA2798 $确定,和/或/或$ civ \ lambda1549。核心样本包括从70个月的Swift/BAT全套目录中绘制的512个AGN。我们还为177种来自更深层次/BAT的调查数据得出的其他AGN提供了测量。我们研究了$ M_ {BH} $估计和通过X射线光谱分析测得的默默无闻的链接。我们发现,宽大的H $α$排放线($ \ log(n _ {\ rm h}/{\ rm cm}^{ - 2})> 22.0 $平均是$ 8.0 _ { - 2.4} $ 35 _ { - 12}^{〜+7} $ \%窄范围比未扫描的源(即$ \ log(n _ {\ rm h}/{\ rm h}/{\ rm cm cm}^{ - 2} { - 2})<21.5 $)。这表明宽线区域的最内向部分被优先吸收。因此,当前单位$ m_ {bh} $处方会导致1.9型来源的严重低估($> $ 1 dex)的质量(具有广泛的H $α$的AGN,但没有广泛的H $β$)和/或$ \ log(n _ {n _ {\ rm h}/h}/rm h}/{我们提供了简单的乘法校正,可为宽H $α$组件的观察到的亮度和宽度($ l [{\ rm b} {\ rm h}α] $和fwhm [bh $α$])在此类来源中为此来解释此效果,以及(部分地)补救$ m_ $ m_ {bh} $估算的对象。作为低音/DR2的关键成分,我们的工作为社区提供了进一步研究低红移宇宙中强大AGN所需的数据。
We present measurements of broad emission lines and virial estimates of supermassive black hole masses ($M_{BH}$) for a large sample of ultra-hard X-ray selected active galactic nuclei (AGNs) as part of the second data release of the BAT AGN Spectroscopic Survey (BASS/DR2). Our catalog includes $M_{BH}$ estimates for a total 689 AGNs, determined from the H$α$, H$β$, $MgII\lambda2798$, and/or $CIV\lambda1549$ broad emission lines. The core sample includes a total of 512 AGNs drawn from the 70-month Swift/BAT all-sky catalog. We also provide measurements for 177 additional AGNs that are drawn from deeper Swift/BAT survey data. We study the links between $M_{BH}$ estimates and line-of-sight obscuration measured from X-ray spectral analysis. We find that broad H$α$ emission lines in obscured AGNs ($\log (N_{\rm H}/{\rm cm}^{-2})> 22.0$) are on average a factor of $8.0_{-2.4}^{+4.1}$ weaker, relative to ultra-hard X-ray emission, and about $35_{-12}^{~+7}$\% narrower than in unobscured sources (i.e., $\log (N_{\rm H}/{\rm cm}^{-2}) < 21.5$). This indicates that the innermost part of the broad-line region is preferentially absorbed. Consequently, current single-epoch $M_{BH}$ prescriptions result in severely underestimated ($>$1 dex) masses for Type 1.9 sources (AGNs with broad H$α$ but no broad H$β$) and/or sources with $\log (N_{\rm H}/{\rm cm}^{-2}) > 22.0$. We provide simple multiplicative corrections for the observed luminosity and width of the broad H$α$ component ($L[{\rm b}{\rm H}α]$ and FWHM[bH$α$]) in such sources to account for this effect, and to (partially) remedy $M_{BH}$ estimates for Type 1.9 objects. As key ingredient of BASS/DR2, our work provides the community with the data needed to further study powerful AGNs in the low-redshift Universe.