Herschel-PACS Observations of Far-IR CO Line Emission in NGC 1068: Highly Excited Molecular Gas in the Circumnuclear Disk
S. Hailey-Dunsheath, E. Sturm, J. Fischer, A. Sternberg, J., Graci\'a-Carpio, R. Davies, E. Gonz\'alez-Alfonso, D. Mark, A. Poglitsch, A., Contursi, R. Genzel, D. Lutz, L. Tacconi, S. Veilleux, A. Verma, and J. A. de, Jong

TL;DR
This study uses Herschel-PACS to detect and analyze high-J CO emission lines in NGC 1068, revealing highly excited molecular gas components near the galaxy's nucleus with implications for understanding AGN obscuration.
Contribution
First detailed analysis of far-IR CO lines in NGC 1068, identifying multiple excitation components and their potential locations relative to the AGN.
Findings
Detected 11 high-J CO lines within the central 700 pc.
Identified two molecular gas components with distinct excitation and kinematic properties.
Constraints on the location and physical conditions of the high-excitation gas near the AGN.
Abstract
We report the detection of far-IR CO rotational emission from the prototypical Seyfert 2 galaxy NGC 1068. Using Herschel-PACS, we have detected 11 transitions in the J_upper=14-30 (E_upper/k_B = 580-2565 K) range, all of which are consistent with arising from within the central 10" (700 pc). The detected transitions are modeled as arising from 2 different components: a moderate excitation (ME) component close to the galaxy systemic velocity, and a high excitation (HE) component that is blueshifted by ~80 km s^{-1}. We employ a large velocity gradient (LVG) model and derive n_H2~10^{5.6} cm^{-3}, T_kin~170 K, and M_H2~10^{6.7} M_sun for the ME component, and n_H2~10^{6.4} cm^{-3}, T_kin~570 K, and M_H2~10^{5.6} M_sun for the HE component, although for both components the uncertainties in the density and mass are plus/minus (0.6-0.9) dex. We compare the CO line profiles with those of…
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