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首页> 外文期刊>The Astrophysical Journal. Letters >ALMA RESOLVES THE TORUS OF NGC 1068: CONTINUUM AND MOLECULAR LINE EMISSION
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ALMA RESOLVES THE TORUS OF NGC 1068: CONTINUUM AND MOLECULAR LINE EMISSION

机译:Alma解析了NGC 1068的圆环:连续体和分子排放

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We used the Atacama Large Millimeter Array (ALMA) to map the emission of the CO(6-5) molecular line and the 432 mu m continuum emission from the 300 pc sized circumnuclear disk (CND) of the nearby Seyfert 2 galaxy NGC 1068 with a spatial resolution of similar to 4 pc. These observations spatially resolve the CND and, for the first time, image the dust emission, the molecular gas distribution, and the kinematics from a 7-10 pc diameter disk that represents the submillimeter counterpart of the putative torus of NGC 1068. We fitted the nuclear spectral energy distribution of the torus using ALMA and near-and mid-infrared (NIR/MIR) data with CLUMPY torus models. The mass and radius of the best-fit solution for the torus are both consistent with the values derived from the ALMA data alone: M-gas(torus) = (1 +/- 0.3) x 10(5) M-circle dot and R-torus = 3.5 +/- 0.5 pc. The dynamics of the molecular gas in the torus show strong non-circular motions and enhanced turbulence superposed on a surprisingly slow rotation pattern of the disk. By contrast with the nearly edge-on orientation of the H2O megamaser disk, we found evidence suggesting that the molecular torus is less inclined (i = 34 degrees-66 degrees) at larger radii. The lopsided morphology and complex kinematics of the torus could be the signature of the Papaloizou-Pringle instability, long predicted to likely drive the dynamical evolution of active galactic nuclei tori.
机译:我们使用Atacama大毫米阵列(ALMA)来映射CO(6-5)分子线的发射,并从附近的SEYFERT 2 GALAXY NGC 1068的300个PC大小的环状核磁盘(CND)中的432亩连续排放类似于4个PC的空间分辨率。这些观察结果在空间上解析了CND,并且首次将粉尘发射,分子气体分布和运动学图像从7-10个PC直径圆盘上代表了NGC 1068推定的圆形圆柱的底下磁盘。我们安装了使用Alma和近红外线(NIR / MIR)数据的核光谱能量分布与块状圆环模型。对于单独的Alma数据衍生的价值,圆环的最佳拟合溶液的质量和半径均为:M型气体(圆环)=(1 +/- 0.3)×10(5)m圆点和R-Torus = 3.5 +/- 0.5 PC。圆环中的分子气体的动态显示出强烈的非圆形运动,并增强围绕盘的令人惊讶的缓慢旋转模式的增强湍流。相比之下,与H2O Megamaser盘的几乎边缘取向相比,我们发现了在较大的半径下倾斜(I = 34度-66度)的分子圆环的证据。圆环的不平衡形态和复杂的运动学可能是帕马洛辅 - 常规稳定性的签名,长时间预测可能驱动活性银核圆锥的动态演变。

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