Radiation feedback on dusty clouds during Seyfert activity
arXiv:1103.4368 · doi:10.1111/j.1365-2966.2011.18751.x
Abstract
We investigate the evolution of dusty gas clouds falling into the centre of an active Seyfert nucleus. Two-dimensional high-resolution radiation hydrodynamics simulations are performed to study the fate of single clouds and the interaction between two clouds approaching the Active Galactic Nucleus. We find three distinct phases of the evolution of the cloud: (i) formation of a lenticular shape with dense inner rim caused by the interaction of gravity and radiation pressure (the lense phase), (ii) formation of a clumpy sickle-shaped structure as the result of a converging flow (the clumpy sickle phase) and (iii) a filamentary phase caused by a rapidly varying optical depth along the sickle. Depending on the column density of the cloud, it will either be pushed outwards or its central (highest column density) parts move inwards, while there is always some material pushed outwards by radiation pressure effects. The general dynamical evolution of the cloud can approximately be described by a simple analytical model.
13 pages, 18 figures, accepted by MNRAS
References in corpus (8)
- PLUTO: a Numerical Code for Computational Astrophysics
- A Close Look at Star Formation around Active Galactic Nuclei
- Resolving the complex structure of the dust torus in the active nucleus of the Circinus galaxy
- The Birth of Molecular Clouds: Formation of Atomic Precursors in Colliding Flows
- Star Formation Around Super-Massive Black Holes
- Parsec-scale dust distributions in Seyfert galaxies - Results of the MIDI AGN snapshot survey
- Simulations of the formation of stellar discs in the Galactic centre via cloud-cloud collisions
- The effect of stellar feedback on the formation and evolution of gas and dust tori in AGN
Cited by in corpus (22)
- Radiation-driven Fountain and Origin of Torus around Active Galactic Nuclei
- Redefining the torus: A unifying view of AGN in the infrared and sub-mm
- Physics of the Galactic Center Cloud G2, on its Way towards the Super-Massive Black Hole
- Multi-phase Nature of a Radiation-Driven Fountain with Nuclear Starburst in a Low-mass Active Galactic Nucleus
- Simulations of the Origin and Fate of the Galactic Center Cloud G2
- On the stability of radiation-pressure-dominated cavities
- Time-resolved infrared emission from radiation-driven central obscuring structures in Active Galactic Nuclei
- The central parsecs of active galactic nuclei: challenges to the torus
- Sweeping Away the Mysteries of Dusty Continuous Winds in AGN
- On the evolution of gas clouds exposed to AGN radiation. I. Three-dimensional radiation hydrodynamic simulations
- Near-Infrared Polarimetric Adaptive Optics Observations of NGC 1068: A torus created by a hydromagnetic outflow wind
- Dusty Cloud Acceleration by Radiation Pressure in Rapidly Star-Forming Galaxies
- Effects Of Circum-nuclear Disk Gas Evolution And The Spin Of Central Black Holes
- Hard X-Ray to Radio Multiwavelength SED Analysis of Local U/LIRGs in GOALS Sample with Self-consistent AGN Model Including Polar-dust Component
- ALMA polarimetry measures magnetically aligned dust grains in the torus of NGC 1068
- Multiphase Gas Nature in the Sub-parsec Region of the Active Galactic Nuclei I: Dynamical Structures of Dusty and Dust-free Outflow
- Magnetohydrodynamic stability of broad line region clouds
- Estimations of the magnetic field strength in the torus of AGN using near-infrared polarimetry
- Dynamics of gas and dust clouds in active galactic nuclei
- Radiative transfer modelling of parsec-scale dusty warped discs
- Gas Inflow and Star Formation near Supermassive Black Holes: The Role of Nuclear Activity
- Galaxy Activity, Torus and Outflow Survey (GATOS) X: Molecular gas clumpiness under the influence of AGN