论文标题
智慧项目-XIII。在Starburst Agn-Host Galaxy Fairall 49
WISDOM Project -- XIII. Feeding molecular gas to the supermassive black hole in the starburst AGN-host galaxy Fairall 49
论文作者
论文摘要
对黑物体质量(智慧)的MM波干涉测量正在通过分子气体动力学探测哈勃序列的星系中的超质量黑洞(SMBHS)。我们介绍了具有活性银河核(AGN)的发光红外星系的首次智慧研究:Fairall 49。我们使用CO(2-1)线的新ALMA观察结果,并与辅助HST Imaging一起使用大约80 PC的空间分辨率。我们达到以下结果:(1)通过定期旋转的气盘和径向流动运动的定期旋转气盘很好地描述了CO运动学,这表明AGN和Starburst活性对冷气的反馈较弱; (2)动态推断的SMBH质量为1.6 +/- 0.4(rnd)+/- 0.8(sys)x 10^8 msun,假设我们已经准确地减去了Agn和Starburst Light贡献,其亮度约为10^9 lsun; (3)SMBH质量与SMBH恒星质量关系一致,但比X射线变异性的先前估计高约50倍; (4)动态推断的分子气体质量比采用银河系CO-H_2转换因子(X_CO)的热气体的分子气质量小30倍,这表明X_CO的值较低; (5)分子气体流入率随半径稳定增加,可能高达5 msun/yr。这项工作强调了使用高分辨率CO数据估算的潜力,除了SMBH质量,附近星系中的X_CO因子和气体流入率。
The mm-Wave Interferometric Survey of Dark Object Masses (WISDOM) is probing supermassive black holes (SMBHs) in galaxies across the Hubble sequence via molecular gas dynamics. We present the first WISDOM study of a luminous infrared galaxy with an active galactic nuclei (AGN): Fairall 49. We use new ALMA observations of the CO(2-1) line with a spatial resolution of about 80 pc together with ancillary HST imaging. We reach the following results: (1) The CO kinematics are well described by a regularly rotating gas disk with a radial inflow motion, suggesting weak feedback on the cold gas from both AGN and starburst activity; (2) The dynamically inferred SMBH mass is 1.6 +/- 0.4 (rnd) +/- 0.8 (sys) x 10^8 Msun, assuming that we have accurately subtracted the AGN and starburst light contributions, which have a luminosity of about 10^9 Lsun; (3) The SMBH mass agrees with the SMBH-stellar mass relation but is about 50 times higher than previous estimates from X-ray variability; (4) The dynamically inferred molecular gas mass is 30 times smaller than that inferred from adopting the Galactic CO-to-H_2 conversion factor (X_CO) for thermalised gas, suggesting low values of X_CO; (5) the molecular gas inflow rate increases steadily with radius and may be as high as 5 Msun/yr. This work highlights the potential of using high-resolution CO data to estimate, in addition to SMBH masses, the X_CO factor and gas inflow rates in nearby galaxies.