Radio and Mid-Infrared Properties of Compact Starbursts: Distancing Themselves from the Main Sequence
arXiv:1302.5704 · doi:10.1088/0004-637X/768/1/2
Abstract
We investigate the relationship between 8.44\,GHz brightness temperatures and 1.4 to 8.44\,GHz radio spectral indices with 6.2\,m polycyclic aromatic hydrocarbon (PAH) emission and 9.7\,m silicate absorption features for a sample of 36 local luminous and ultra-luminous infrared galaxies. We find that galaxies having small 6.2\,m PAH equivalent widths (EQWs), which signal the presence of weak PAH emission and/or an excess of very hot dust, also have flat spectral indices. The three active galactic nuclei (AGN) identified through their excessively large 8.44\,GHz brightness temperatures are also identified as AGN via their small 6.2\,m PAH EQWs. We also find that the flattening of the radio spectrum increases with increasing silicate optical depth, 8.44\,GHz brightness temperature, and decreasing size of the radio source even after removing potential AGN, supporting the idea that compact starbursts show spectral flattening as the result of increased free-free absorption. These correlations additionally suggest that the dust obscuration in these galaxies must largely be coming from the vicinity of the compact starburst itself, and is not distributed throughout the (foreground) disk of the galaxy. Finally, we investigate the location of these infrared-bright systems relative to the main sequence (star formation rate vs. stellar mass) of star-forming galaxies in the local universe. We find that the radio spectral indices of galaxies flattens with increasing distance above the main sequence, or in other words, with increasing specific star formation rate. This indicates that galaxies located above the main sequence, having high specific star formation rates, are typically compact starbursts hosting deeply embedded star formation that becomes more optically thick in the radio and infrared with increased distance above the main sequence.
7 pages, 5 figures, 1 table. Accepted for publication in ApJ (typos fixed, results unchanged)
References in corpus (4)
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- VLBI Images of 49 Radio Supernovae in Arp 220
- P-Cygni Profiles of Molecular Lines toward Arp 220 Nuclei
- Galaxy evolution in the infra-red: comparison of a hierarchical galaxy formation model with SPITZER data
Cited by in corpus (34)
- A Herschel/PACS Far Infrared Line Emission Survey of Local Luminous Infrared Galaxies
- Explaining the [CII]158um Deficit in Luminous Infrared Galaxies - First Results from a Herschel/PACS Study of the GOALS Sample
- The LOFAR window on star-forming galaxies and AGN - curved radio SEDs and IR-radio correlation at
- The infrared-radio correlation of star-forming galaxies is strongly M-dependent but nearly redshift-invariant since z4
- A Herschel Space Observatory Spectral Line Survey of Local Luminous Infrared Galaxies from 194 to 671 Microns
- Storm in a "Teacup": a radio-quiet quasar with ~10kpc radio-emitting bubbles and extreme gas kinematics
- Radio-Selected Binary Active Galactic Nuclei from the Very Large Array Stripe 82 Survey
- A 33 GHz Survey of Local Major Mergers: Estimating the Sizes of the Energetically Dominant Regions from High Resolution Measurements of the Radio Continuum
- The Radio Synchrotron Background: Conference Summary and Report
- The Role of Merger Stage on Galaxy Radio Spectra in Local Infrared-Bright Starburst Galaxies
- SPT 0538-50: Physical conditions in the ISM of a strongly lensed dusty star-forming galaxy at z=2.8
- Radio spectral properties of star-forming galaxies in the MIGHTEE-COSMOS field and their impact on the far-infrared-radio correlation
- ALMA Observations of Warm Molecular Gas and Cold Dust in NGC 34
- Large gas reservoirs and free-free emission in two lensed star-forming galaxies at z=2.7
- Star formation and AGN activity in a sample of local Luminous Infrared Galaxies through multi-wavelength characterization
- The Star Formation in Radio Survey: 3 - 33 GHz Imaging of Nearby Galaxy Nuclei and Extranuclear Star-forming Regions
- Using [CII] 158 micron Emission From Isolated ISM Phases as a Star-Formation Rate Indicator
- Radio continuum properties of luminous infrared galaxies. Identifying the presence of an AGN in the radio
- An ALMA survey of submillimetre galaxies in the COSMOS field: The extent of the radio-emitting region revealed by 3 GHz imaging with the Very Large Array
- Hard X-Ray to Radio Multiwavelength SED Analysis of Local U/LIRGs in GOALS Sample with Self-consistent AGN Model Including Polar-dust Component
- (Sub)millimetre interferometric imaging of a sample of COSMOS/AzTEC submillimetre galaxies - II. The spatial extent of the radio-emitting regions
- The Role of Magnetic Fields in Starburst Galaxies as Revealed by OH Megamasers
- (Sub)millimetre interferometric imaging of a sample of COSMOS/AzTEC submillimetre galaxies IV. Physical properties derived from spectral energy distributions
- The VLA Frontier Field Survey: A Comparison of the Radio and UV/optical size of star-forming galaxies
- Radio spectral properties of star-forming galaxies between 150-5000MHz in the ELAIS-N1 field
- Jets, Arcs and Shocks: NGC 5195 at radio wavelengths
- After the interaction: an efficiently star-forming molecular disk in NGC5195
- Radio properties of ten nearby ultraluminous infrared galaxies with signatures of luminous buried active galactic nuclei
- Radio-only and Radio-to-far-ultraviolet Spectral Energy Distribution Modeling of 14 ULIRGs: Insights into the Global Properties of Infrared Bright Galaxies
- The Far-Infrared-Radio Correlation in MS0451-03
- Morphology and structure of BzK-selected galaxies at z~2 in the CANDELS-COSMOS field
- The Radio Spectral Energy Distribution and Star Formation Calibration in MIGHTEE-COSMOS Highly Star-Forming Galaxies at 1.5 < z < 3.5
- The Role of Radio Observations in Studies of Infrared-Bright Galaxies: Prospects for a next-generation Very Large Array
- Milli-arcsecond properties of 10C sources in the Lockman Hole