Infrared Spectroscopy of CO Ro-vibrational Absorption Lines toward the Obscured AGN IRAS 08572+3915
arXiv:1208.4663 · doi:10.1093/pasj/65.1.5
Abstract
We present high-resolution spectroscopy of gaseous CO absorption in the fundamental ro-vibrational band toward the heavily obscured active galactic nucleus (AGN) IRAS 08572+3915. We have detected absorption lines up to highly excited rotational levels (J<=17). The velocity profiles reveal three distinct components, the strongest and broadest (delta_v > 200 km s-1) of which is due to blueshifted (-160 km s-1) gas at a temperature of ~ 270 K absorbing at velocities as high as -400 km s-1. A much weaker but even warmer (~ 700 K) component, which is highly redshifted (+100 km s-1), is also detected, in addition to a cold (~ 20 K) component centered at the systemic velocity of the galaxy. On the assumption of local thermodynamic equilibrium, the column density of CO in the 270 K component is NCO ~ 4.5 x 10^18 cm-2, which in fully molecular gas corresponds to a H2 column density of NH2 ~ 2.5 x 10^22 cm-2. The thermal excitation of CO up to the observed high rotational levels requires a density greater than nc(H2) > 2 x 10^7 cm-3, implying that the thickness of the warm absorbing layer is extremely small (delta_d < 4 x 10-2 pc) even if it is highly clumped. The large column densities and high radial velocities associated with these warm components, as well as their temperatures, indicate that they originate in molecular clouds near the central engine of the AGN.
13 pages, 7 figures, accepted for publication in PASJ (Vol.65 No.1 2013/02/25)
References in corpus (10)
- AGN Dusty Tori: I. Handling of Clumpy Media
- Mid-IR Galaxy Classification Based on Silicate Obscuration and PAH Equivalent Width
- Resolving the complex structure of the dust torus in the active nucleus of the Circinus galaxy
- Radiative Transfer Modeling of Three-Dimensional Clumpy AGN Tori and its Application to NGC 1068
- The distribution of silicate strength in Spitzer spectra of AGNs and ULIRGs
- AGN dust tori at low and high luminosities
- AKARI IRC infrared 2.5-5 micron spectroscopy of a large sample of luminous infrared galaxies
- A Spitzer Infrared Spectrograph Survey of Warm Molecular Hydrogen in Ultra-luminous Infrared Galaxies
- The Interstellar Medium of IRAS 08572+3915 NW: H3+ and Warm High Velocity CO
- 3-5 micron spectroscopy of obscured AGNs in ULIRGs
Cited by in corpus (16)
- Molecular outflows in local ULIRGs: energetics from multi-transition OH analysis
- Breaking the Obscuring Screen: A Resolved Molecular Outflow in a Buried QSO
- All the PAHs: an AKARI-Spitzer Cross Archival Spectroscopic Survey of Aromatic Emission in Galaxies
- AGN feedback in a galaxy merger: Multi-phase, galaxy-scale outflows including a fast molecular gas blob ~6 kpc away from IRAS F08572+3915
- ALMA Observations of Nearby Luminous Infrared Galaxies with Various AGN Energetic Contributions Using Dense Gas Tracers
- The Near-Infrared CO Absorption Band as a Probe to the Innermost Part of an AGN Obscuring Material
- Feedback and feeding in the context of galaxy evolution with SPICA: direct characterization of molecular outflows and inflows
- The sign of active galactic nucleus quenching in a merger remnant with radio jets
- Circumnuclear Multi-phase Gas in Circinus Galaxy IV: absorption owing to high- CO rotational transitions
- Revised Wavelength and Spectral Response Calibrations for AKARI Near-Infrared Grism Spectroscopy: Cryogenic Phase
- Extremely Buried Nucleus of IRAS 172080014 Observed at Sub-Millimeter and Near-Infrared Wavelengths
- Probing dynamics and thermal properties inside molecular tori with CO rovibrational absorption lines
- Warm Molecular Gas in the Central Parsecs of the Buried Nucleus of NGC 4418 Traced with the Fundamental CO Ro-vibrational Absorptions
- Systematic Study of the Inner Structure of Molecular Tori in Nearby U/LIRGs using Velocity Decomposition of CO Rovibrational Absorption Lines
- First detections of CO absorption in the Magellanic Clouds and direct measurement of the CO-to-H ratio
- Study of the Inner Structure of the Molecular Torus in IRAS 08572+3915 NW with Velocity Decomposition of CO Rovibrational Absorption Lines