论文标题

在宽银河NGC 1052中,在Alma发现的宽度圆盘内的巨大分子圆环

A Massive Molecular Torus inside a Gas-Poor Cirnumnuclear Disk in the Radio Galaxy NGC 1052 Discovered with ALMA

论文作者

Kameno, Seiji, Sawada-Satoh, Satoko, Impellizzeri, C. M. Violette, Espada, Daniel, Nakai, Naomasa, Sugai, Hajime, Terashima, Yuichi, Kohno, Kotaro, Lee, Minju, Martín, Sergio

论文摘要

我们报告了NGC 1052的ALMA观察结果,以探索气体贫乏的活性银核(AGN)中的质量积聚。我们检测到CO排放,代表了一个旋转环的环核磁盘(CND),其气体质量为$ 5.3 \ times 10^{5} $ m $ _ {\ odot} $。 CND的气体质量比典型的塞弗特星系中的气体质量较小,并且具有透明的恒星形成,并且太贫穷而无法将质量吸收驱动到中央发动机上。连续发射铸造CO,HCN,HCO $^+$的分子吸收功能,因此,SO $ _2 $,CS,CN和H $ _2 $ O,带有H $^{13} $ CN和HC $^{15} $ n and Hc^{15} $ n和fibratationally-excited(v $ _2 = 1 $ $)比CND发射线宽度更宽的吸收线宽度意味着存在一个几何厚的分子圆环,半径为$ 2.4 \ pm 1.3 $ PC,厚度比为$ 0.7 \ pm 0.3 $。我们使用H $^{12} $估计h $ _2 $列密度为$(3.3 \ pm 0.7)\ times 10^{25} $ cm $^{ - 2} $,使用H $^{12} $ CN,H $^{13} $ CN,以及HCO $^{+} $^{+} $吸收功能和$^$^$^$^$^} hco $^{+} $ - to-t $ _2 $,并得出$(1.3 \ pm 0.3)\ times 10^7 $ m $ _ {\ odot} $的圆环气体质量,即$ \ sim 9 $ \%的中央黑洞质量。圆环中的分子气体是块状的,估计的覆盖率为$ 0.17^{+0.06} _ { - 0.03} $。圆环内的团块的气体密度被推断为$(6.4 \ pm 1.3)\ times 10^7 $ cm $^{ - 3} $,它符合h $ _2 $ o maser的激发条件。圆环中的特定角动量超过了从CND推断的扁平旋转曲线,表明在14.4-PC的影响球内进行开普勒旋转。

We report ALMA observations of NGC 1052 to quest mass accretion in a gas-poor active galactic nucleus (AGN). We detected CO emission representing a rotating ring-like circumnuclear disk (CND) seen edge-on with the gas mass of $5.3 \times 10^{5}$ M$_{\odot}$. The CND has smaller gas mass than that in typical Seyfert galaxies with circumnuclear star formation and is too gas-poor to drive mass accretion onto the central engine. The continuum emission casts molecular absorption features of CO, HCN, HCO$^+$, SO, SO$_2$, CS, CN, and H$_2$O, with H$^{13}$CN and HC$^{15}$N and vibrationally-excited (v$_2 = 1$) HCN and HCO$^+$. Broader absorption line widths than CND emission line widths imply presence of a geometrically thick molecular torus with a radius of $2.4 \pm 1.3$ pc and a thickness ratio of $0.7 \pm 0.3$. We estimate the H$_2$ column density of $(3.3 \pm 0.7) \times 10^{25}$ cm$^{-2}$ using H$^{12}$CN, H$^{13}$CN, and HCO$^{+}$ absorption features and adopting abundance ratio of $^{12}$C-to-$^{13}$C and a HCO$^{+}$-to-H$_2$, and derived the torus gas mass of $(1.3 \pm 0.3) \times 10^7$ M$_{\odot}$, which is $\sim 9$\% of the central black-hole mass. The molecular gas in the torus is clumpy with the estimated covering factor of $0.17^{+0.06}_{-0.03}$. The gas density of clumps inside the torus is inferred to be $(6.4 \pm 1.3) \times 10^7$ cm$^{-3}$, which meets the excitation conditions of H$_2$O maser. Specific angular momentum in the torus exceeds a flat-rotation curve extrapolated from that of the CND, indicating a Keplerian rotation inside a 14.4-pc sphere of influence.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源