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The ALMA Discovery of the Rotating Disk and Fast Outflow of Cold Molecular Gas in NGC 1275

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arxiv 1905.06017 v2 pith:ZUOYA47V submitted 2019-05-15 astro-ph.GA

classification astro-ph.GA
keywords colddiskaccretionabsorptiondetectedfilamentmolecularradio
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abstract

We present ALMA Band 6 observations of the CO(2-1), HCN(3-2), and HCO$^{+}$(3-2) lines in the nearby radio galaxy / brightest cluster galaxy (BCG) of NGC 1275 with the spatial resolution of $\sim20$ pc. In the previous observations, CO(2-1) emission was detected as radial filaments lying in the east-west direction. We resolved the inner filament and found that the filament cannot be represented by a simple infalling stream both morphologically and kinematically. The observed complex nature of the filament resembles the cold gas structure predicted by recent numerical simulations of cold chaotic accretion. A crude estimate suggests that the accretion rate of the cold gas can be higher than that of hot gas. Within the central 100 pc, we detected a rotational disk of the molecular gas whose mass is $\sim10^{8} M_{\sun}$. This is the first evidence of the presence of massive cold gas disk on this spatial scale for BCGs. The disk rotation axis is approximately consistent with the axis of the radio jet on subpc scales. This probably suggests that the cold gas disk is physically connected to the innermost accretion disk which is responsible for jet launching. We also detected absorption features in the HCN(3-2) and HCO$^{+}$(3-2) spectra against the radio continuum emission mostly radiated by $\sim1.2$-pc size jet. The absorption features are blue-shifted from the systemic velocity by $\sim$300-600~km~s$^{-1}$, which suggests the presence of outflowing gas from the active galactic nucleus (AGN). We discuss the relation of the AGN feeding with cold accretion, the origin of blue-shifted absorption, and estimate of black hole mass using the molecular gas dynamics.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Dense gas formation and destruction in a simulated Perseus-like galaxy cluster with spin-driven black hole feedback

    astro-ph.GA 2019-09 conditional novelty 6.0 of 10

    In a simulated Perseus-like cluster, spin-driven black hole jets repeatedly destroy and redistribute dense gas, producing overly clumpy morphologies compared to observed filaments.

  2. The AGN fuelling/feedback cycle in nearby radio galaxies II. Kinematics of the molecular gas

    astro-ph.GA 2019-08 conditional novelty 6.0 of 10

    Molecular gas discs in six low-excitation radio galaxies rotate in an ordered manner but show ubiquitous low-level distortions, with NGC 3557 yielding a black hole mass of 7.1e8 solar masses and NGC 3100 showing evide...

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