The Fornax 3D project: dust mix and gas properties in the center of early-type galaxy FCC 167
arXiv:1812.07582 · doi:10.1051/0004-6361/201834465
Abstract
Galaxies continuously reprocess their interstellar material. One can therefore expect changing dust grain properties in galaxies which have followed different evolutionary pathways. Determining the intrinsic dust grain mix of a galaxy helps in reconstructing its evolutionary history. Early-type galaxies occasionally display regular dust lanes in their central regions. Due to the relatively simple geometry and composition of their stellar bodies, these galaxies are ideal to disentangle dust mix variations from geometric effects. We therefore model the various components of such a galaxy (FCC 167). We reconstruct its recent history, and investigate the possible fate of the dust lane. MUSE and ALMA observations reveal a nested ISM structure. An ionised-gas disk pervades the central regions of FCC 167, including those occupied by the main dust lane. Inward of the dust lane, we also find a disk/ring of cold molecular gas where stars are forming and HII regions contribute to the ionised-gas emission. Further in, the gas ionisation points towards an active galactic nucleus and the fuelling of a central supermassive black hole from its surrounding ionised and molecular reservoir. Observational constraints and radiative transfer models suggest the dust and gas are distributed in a ring-like geometry and the dust mix lacks small grains. The derived dust destruction timescales from sputtering in hot gas are short and we conclude that the dust must be strongly self-shielding and clumpy, or will quickly be eroded and disappear. Our findings show how detailed analysis of individual systems can complement statistical studies of dust-lane ETGs.
14 pages, 9 figures, accepted for publication in Astronomy & Astrophysics
References in corpus (23)
- Improving the full spectrum fitting method: accurate convolution with Gauss-Hermite functions
- The MUSE second-generation VLT instrument
- An Analysis of the Shapes of Interstellar Extinction Curves. V. The IR-Through-UV Curve Morphology
- The evolution of amorphous hydrocarbons in the ISM: dust modelling from a new vantage point
- SKIRT: an Advanced Dust Radiative Transfer Code with a User-Friendly Architecture
- The ATLAS3D Project - XXVIII. Dynamically-driven star formation suppression in early-type galaxies
- Unifying X-ray Scaling Relations from Galaxies to Clusters
- The role of minor mergers in the recent star formation history of early-type galaxies
- DustPedia - A Definitive Study of Cosmic Dust in the Local Universe
- Dust variations in the diffuse interstellar medium: constraints on Milky Way dust from Planck-HFI observations
- Dust Extinction and Emission in a Clumpy Galactic Disk. An Application of the Radiative Transfer Code TRADING
- Surface chemistry in the Interstellar Medium II. formation on dust with random temperature fluctuations
- The distribution of interstellar dust in CALIFA edge-on galaxies via oligochromatic radiative transfer fitting
- High-resolution, 3D radiative transfer modeling : I. The grand-design spiral galaxy M51
- The Herschel Exploitation of Local Galaxy Andromeda (HELGA) VII: A SKIRT radiative transfer model and insights on dust heating
- Herschel-ATLAS: Properties of dusty massive galaxies at low and high redshifts
- WISDOM Project - III: Molecular gas measurement of the supermassive black hole mass in the barred lenticular galaxy NGC4429
- Properties of dust in early-type galaxies
- Insights into gas heating and cooling in the disc of NGC 891 from Herschel far-infrared spectroscopy
- ALMA Observations of Circumnuclear Disks in Early Type Galaxies: 12CO(2-1) and Continuum Properties
- Determining the extragalactic extinction law with SALT. II. Additional sample
- MUSE stares into the shadows: the high-resolution dust attenuation curve of NGC 5626
- The Herschel Fornax Cluster Survey II: FIR properties of optically-selected Fornax cluster galaxies
Cited by in corpus (5)
- The Fornax3D project: Tracing the assembly history of the cluster from the kinematic and line-strength maps
- The Fornax 3D project: a two-dimensional view of the stellar initial mass function in the massive lenticular galaxy FCC 167
- AlFoCS + Fornax3D: resolved star formation in the Fornax cluster with ALMA and MUSE
- AlFoCS + F3D II: unexpectedly low gas-to-dust ratios in the Fornax galaxy cluster
- Fornax 3D project: assessing the diversity of IMF and stellar population maps within the Fornax Cluster