Dust in starburst nuclei and ULIRGs: SED models for observers
arXiv:astro-ph/0606444 · doi:10.1051/0004-6361:20065700
Abstract
We provide a library of some 7000 SEDs (available at www.eso.org/~rsiebenm) for the nuclei of starburst and ultra luminous galaxies. Its purpose is to quickly obtain estimates of the basic parameters, such as luminosity, size and dust or gas mass and to predict the flux at yet unobserved wavelengths. The procedure is simple and consists of finding an element in the library that matches the observations. The objects may be in the local universe or at high z. We calculate the radiative transfer in spherical symmetry for a stellar cluster permeated by an interstellar medium with standard (Milky Way) dust properties. The cluster contains two stellar populations: old bulge stars and OB stars. Because the latter are young, a certain fraction of them will be embedded in compact clouds which constitute hot spots that determine the MIR fluxes. We present SEDs for a broad range of luminosities, sizes and obscurations. We argue that the assumption of spherical symmetry and the neglect of clumpiness of the medium are not severe shortcomings for computing the dust emission. The validity of the approach is demonstrated by matching the SED of seven of the best studied galaxies, including M82 and Arp220, by library elements. In all cases, one finds an element which fits the observed SED very well, and the parameters defining the element are in full accord with what is known about the galaxy from detailed studies. We also compare our method of computing SEDs with other techniques described in the literature.
10pages, 6 figures, submitted to A&A
Cited by in corpus (50)
- Distant Radio Galaxies and their Environments
- Modelling the Pan-Spectral Energy Distribution of Starburst Galaxies: IV The Controlling Parameters of the Starburst SED
- The ALPINE-ALMA [CII] Survey: The nature, luminosity function and star formation history of dusty galaxies up to z~6
- Photometric redshifts in the SWIRE Survey
- Spitzer Mid-to-Far-Infrared Flux Densities of Distant Galaxies
- The Galaxy Activity, Torus and Outflow Survey (GATOS) I. ALMA images of dusty molecular tori in Seyfert galaxies
- A large population of mid-infrared selected, obscured active galaxies in the Bootes field
- Should we believe the results of UV-mm galaxy SED modelling?
- Nuclear 11.3m PAH emission in local active galactic nuclei
- Modeling the Dust Properties of z ~ 6 Quasars with ART^2 -- All-wavelength Radiative Transfer with Adaptive Refinement Tree
- Star formation and nuclear activity in luminous infrared galaxies: An infrared through radio review
- The Intrinsic Far-infrared Continua of Type-1 Quasars
- Strong PAH Emission from z~2 ULIRGs
- The diffuse gamma-ray flux associated with sub-PeV/PeV neutrinos from starburst galaxies
- Resolving the AGN and host emission in the mid-infrared using a model-independent spectral decomposition
- Spitzer IRAC Infrared Colours of Submillimetre-bright Galaxies
- Spatially Resolving a Starburst Galaxy at Hard X-ray Energies: NuSTAR, Chandra, AND VLBA Observations of NGC 253
- The temperature dependence of the far-infrared-radio correlation in the Herschel-ATLAS
- LABOCA observations of nearby, active galaxies
- Evidence for a large fraction of Compton-thick quasars at high redshift
- Chandra survey in the AKARI North Ecliptic Pole Deep Field. I. X-ray data, point-like source catalog, sensitivity maps, and number counts
- No Redshift Evolution of Dust Temperatures from
- Infrared and millimetre-wavelength evidence for cold accretion within a z = 2.83 Lyman-alpha blob
- The properties of 70micron selected high-redshift galaxies in the Extended Groth Strip
- A new look at local ultraluminous infrared galaxies: the atlas and radiative transfer models of their complex physics
- Nuclear activity in nearby galaxies: Mid-infrared imaging with the VLT
- AEGIS: Infrared Spectroscopy of An Infrared Luminous Lyman Break Galaxy at z=3.01
- Obscured and powerful AGN and starburst activities at z~3.5
- The Infrared and Radio Fluxes Densities of Galactic HII Regions
- Star formation in galaxies hosting AGN: A flat trend of star-formation rate with X-ray luminosity of galaxies hosting AGN in the SCUBA-2 Cosmology Legacy Survey
- Infrared Emission from the Nearby Cool Core Cluster Abell 2597
- Far-Infrared Spectral Energy Distributions and Photometric Redshifts of Dusty Galaxies
- [Ultra] Luminous Infrared Galaxies selected at 90 m in the AKARI deep field: a study of AGN types contributing to their infrared emission
- Combining Physical galaxy models with radio observations to constrain the SFRs of high-z dusty star forming galaxies
- Stellar populations and physical properties of starbursts in the Antennae galaxy from self-consistent modelling of MUSE spectra
- On the Simultaneous Modelling of Dust and Stellar Populations for Interpretation of Galaxy Properties
- Molecular gas properties of UV-luminous star-forming galaxies at low redshift
- Quantifying the cool ISM in radio AGNs: evidence for late-time re-triggering by galaxy mergers and interactions
- The Physical Drivers of the Luminosity-Weighted Dust Temperatures in High-Redshift Galaxies
- Morphological Evolution of the Hosts of Far-Infrared/Submillimeter Galaxies
- Infrared polarimetry of Mrk 231: Scattering off hot dust grains in the central core
- Submm-bright X-ray absorbed QSOs at z~2: insights into the co-evolution of AGN and star-formation
- SMART: spectral energy distributions Markov chain analysis with radiative transfer models
- What is the nature of Little Red Dots and what is not, MIRI SMILES edition
- Euclid preparation. LXVIII. Extracting physical parameters from galaxies with machine learning
- How accurate are infrared luminosities from monochromatic photometric extrapolation?
- Spitzer/IRS full spectral modeling to characterize mineralogical properties of silicate dust in heavily obscured AGNs
- Counterparts of Candidate Dusty Starbursts at z > 6
- Graph Theoretical Analysis of local ultraluminous infrared galaxies and quasars
- A comparative study of galaxy evolution with four different active galactic nucleus torus models and two different host geometries