The Nuclear Outflow in NGC 2110
arXiv:1006.4635 · doi:10.1111/j.1365-2966.2010.17153.x
Abstract
We present a HST/STIS spectroscopic and optical/radio imaging study of the Seyfert NGC 2110 aiming to measure the dynamics and understand the nature of the nuclear outflow in the galaxy. Previous HST studies have revealed the presence of a linear structure in the Narrow-Line Region (NLR) aligned with the radio jet. We show that this structure is strongly accelerated, probably by the jet, but is unlikely to be entrained in the jet flow. The ionisation properties of this structure are consistent with photoionisation of dusty, dense gas by the active nucleus. We present a plausible geometrical model for the NLR, bringing together various components of the nuclear environment of the galaxy. We highlight the importance of the circum-nuclear disc in determining the appearance of the emission line gas and the morphology of the jet. From the dynamics of the emission line gas, we place constraints on the accelerating mechanism of the outflow and discuss the relative importance of radio source synchrotron pressure, radio jet ram pressure and nuclear radiation pressure in accelerating the gas. While all three mechanisms can account for the energetics of the emission line gas, gravitational arguments support radio jet ram pressure as the most likely source of the outflow.
15 pages, 7 figures; accepted to MNRAS
References in corpus (6)
- Heating Hot Atmospheres with Active Galactic Nuclei
- The MAPPINGS III Library of Fast Radiative Shock Models
- Stellar and Molecular Gas Kinematics of NGC1097: Inflow Driven by a Nuclear Spiral
- Streaming Motions Towards the Supermassive Black Hole in NGC 1097
- The Chandra, HST, and VLA View of the Circumnuclear Extended Emission in the Narrow Emission Line Galaxy NGC 2110
- Transient and Highly Polarized Double-Peaked H-alpha Emission in the Seyfert 2 Nucleus of NGC 2110
Cited by in corpus (20)
- MAGNUM survey: Compact jets causing large turmoil in galaxies -- Enhanced line widths perpendicular to radio jets as tracers of jet-ISM interaction
- The location and impact of jet-driven outflows of cold gas: the case of 3C293
- A Deep Chandra ACIS Study of NGC 4151. II. The Innermost Emission Line Region and Strong Evidence for Radio Jet-NLR Cloud Collision
- Feeding and Feedback in the Inner Kiloparsec of the Active Galaxy NGC2110
- Feeding Versus Feedback in AGN from Near-Infrared IFU Observations XI: NGC 2110
- Torus model properties of an ultra-hard X-ray selected sample of Seyfert galaxies
- An accreting supermassive black hole irradiating molecular gas in NGC 2110
- Upholding the Unified Model for Active Galactic Nuclei: VLT/FORS2 Spectropolarimetry of Seyfert 2 galaxies
- AGN Coronae Through A Jet Perspective
- A radio-jet driven outflow in the Seyfert 2 galaxy NGC 2110?
- AGN X-ray irradiation of CO gas in NGC 2110 revealed by and ALMA
- Outflows, Inflows and Young Stars in the inner 200 pc of the Seyfert galaxy NGC 2110
- Young Star Clusters In The Circumnuclear Region Of NGC 2110
- Shocks and Spatially Offset Active Galactic Nuclei Produce Velocity Offsets in Emission Lines
- The Quasar Feedback Survey: zooming into the origin of radio emission with e-MERLIN
- The life cycle of starbursting circumnuclear gas discs
- IC 630: Piercing the Veil of the Nuclear Gas
- GATOS XI : Excess dust heating in the Narrow Line Regions of nearby AGN revealed with JWST/MIRI
- Detection of helicoidal motion in the optical jet of PKS 0521-365
- Modeling Cosmological Evolution of Jetted Seyfert Galaxies for z<10