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

Mejıa-Restrepo, Julian E., Trakhtenbrot, Benny, Koss, Michael J., Oh, Kyuseok, Brok, Jakob den, Stern, Daniel, Powell, Meredith C., Ricci, Federica, Caglar, Turgay, Ricci, Claudio, Bauer, Franz E., Treister, Ezequiel, Harrison, Fiona A., Urry, C. M., Ananna, Tonima Tasnim, Asmus, Daniel, Assef, Roberto J., Bar, Rudolf E., Bessiere, Patricia S., Burtscher, Leonard, Ichikawa, Kohei, Kakkad, Darshan, Kamraj, Nikita, Mushotzky, Richard, Privon, George C., Rojas, Alejandra F., Sani, Eleonora, Schawinski, Kevin, Veilleux, Sylvain

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.

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