论文标题
班级:冠状活动光谱调查
CLASS: Coronal Line Activity Spectroscopic Survey
论文作者
论文摘要
我们对Sloan Digital Sky Survey(SDSS)数据释放8目录观察到的近100万个星系的光谱中的一组全面的冠状冠线进行了首次系统调查。这包括经常被忽视的高电离电位(IP)线,例如[ar x] $λ$ 5533,[s xii] $λ$ 7609,[fe xi] $λ$ 7892和[fe xiv] $λ$ 5303。我们发现,鉴于SDSS的敏感性有限,强冠线发射极为罕见,只有$ \ sim 0.03 $ 0.03 $%的样品显示至少一条冠状线,明显低于星系的分数,显示出光学窄线比($ \ sim 17 $ 17 $%)或中膜颜色($ \ sim 2 $%)($ \ sim 2 $%)。冠状线发光性显示出较大的动态范围,值范围从$ \ sim10^{34} $到$ 10^{42} $ erg s $^s $^{ - 1} $。我们发现,矮星系中的绝大多数($ \ sim 80 $%)的冠状线发射器($ m_* <{9.6} \ times 10^9 $ m $ _ \ odot $)没有显示光学狭窄的线路比率指示核活动,相比之下,较高的质量星系($ \ sim 17 $%)。此外,我们发现最高的电离电势线优先在较低的质量星系中找到。这些发现与低质量星系中发现的较低质量黑孔产生更热的吸积盘的理论一致,从而增强了较高的电离冠状线光谱。使用30 m级望远镜或JWST进行未来的冠状线搜索可能会为发现中间质量黑洞人口提供一条途径。
We conduct the first systematic survey of a comprehensive set of the twenty optical coronal lines in the spectra of nearly 1 million galaxies observed by the Sloan Digital Sky Survey (SDSS) Data Release 8 catalog. This includes often overlooked high ionization-potential (IP) lines such as [Ar X] $λ$5533, [S XII] $λ$7609, [Fe XI] $λ$7892, and [Fe XIV] $λ$5303. We find that, given the limited sensitivity of SDSS, strong coronal line emission is extremely rare, with only $\sim 0.03$% of the sample showing at least one coronal line, significantly lower than the fraction of galaxies showing optical narrow line ratios ($\sim 17$%) or mid-infrared colors ($\sim 2$%) indicative of nuclear activity. The coronal line luminosities exhibit a large dynamic range, with values ranging from $\sim10^{34}$ to $10^{42}$ erg s$^{-1}$. We find that a vast majority ($\sim 80$%) of coronal line emitters in dwarf galaxies ($M_* < {9.6} \times 10^9$ M$_\odot$) do not display optical narrow line ratios indicative of nuclear activity, in contrast to higher mass galaxies ($\sim 17$%). Moreover, we find that the highest ionization potential lines are preferentially found in lower mass galaxies. These findings are consistent with the theory that lower mass black holes found in lower mass galaxies produce a hotter accretion disk, which in turn enhances the higher ionization coronal line spectrum. Future coronal line searches with 30 m class telescopes or JWST may provide a pathway into uncovering the intermediate mass black hole population.