Tracing star formation with non-thermal radio emission
arXiv:1611.08311 · doi:10.1093/mnras/stx460
Abstract
A key for understanding the evolution of galaxies and in particular their star formation history will be future ultra-deep radio surveys. While star formation rates (SFRs) are regularly estimated with phenomenological formulas based on the local FIR-radio correlation, we present here a physically motivated model to relate star formation with radio fluxes. Such a relation holds only in frequency ranges where the flux is dominated by synchrotron emission, as this radiation originates from cosmic rays produced in supernova remnants, therefore reflecting recent star formation. At low frequencies synchrotron emission can be absorbed by the free-free mechanism. This suppression becomes stronger with increasing number density of the gas, more precisely of the free electrons. We estimate the critical observing frequency below which radio emission is not tracing the SFR, and use the three well-studied local galaxies M 51, M 82, and Arp 220 as test cases for our model. If the observed galaxy is at high redshift, this critical frequency moves along with other spectral features to lower values in the observing frame. In the absence of systematic evolutionary effects, one would therefore expect that the method can be applied at lower observing frequencies for high redshift observations. However, in case of a strong increase of the typical gas column densities towards high redshift, the increasing free-free absorption may erase the star formation signatures at low frequencies. At high radio frequencies both, free-free emission and the thermal bump, can dominate the spectrum, also limiting the applicability of this method.
13 pages, 8 figures, accepted for publication at MNRAS
References in corpus (19)
- Cosmic Star Formation History
- The Evolution of Galaxy Structure over Cosmic Time
- Magnetic Fields in Spiral Galaxies
- Intense Star Formation within Resolved Compact Regions in a Galaxy at z=2.3
- Evolution of the dust emission of massive galaxies up to z=4 and constraints on their dominant mode of star formation
- The role of stellar feedback in the formation of galaxies
- The First Galaxies: Assembly, Cooling and the Onset of Turbulence
- The SILCC (SImulating the LifeCycle of molecular Clouds) project - II. Dynamical evolution of the supernova-driven ISM and the launching of outflows
- Resolving the Formation of Protogalaxies. II. Central Gravitational Collapse
- Magnetism in the spiral galaxy NGC 6946: magnetic arms, depolarization rings, dynamo modes and helical fields
- Stellar and Quasar Feedback in Concert: Effects on AGN Accretion, Obscuration, and Outflows
- GOODS-HERSCHEL: star formation, dust attenuation and the FIR-radio correlation on the Main Sequence of star-forming galaxies up to z~4
- The far-infrared/radio correlation and radio spectral index of galaxies in the SFR-M* plane up to z 2
- Dynamically Driven Evolution of the Interstellar Medium in M51
- The Electron Temperature Gradient in the Galactic Disk
- Subarcsecond international LOFAR radio images of Arp 220 at 150 MHz: A kpc-scale star forming disk surrounding nuclei with shocked outflows
- Cosmic Rays: Recent Progress and some Current Questions
- Galactic synchrotron emission and the FIR-radio correlation at high redshift
- The far-infrared - radio correlation in dwarf galaxies
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- The LOFAR Two-metre Sky Survey Deep Fields Data Release 1: V. Survey description, source classifications and host galaxy properties
- The Fast Radio Burst FRB 20201124A in a star forming region: constraints to the progenitor and multiwavelength counterparts
- The Far-Infrared Radio Correlation at low radio frequency with LOFAR/H-ATLAS
- Towards a census of high-redshift dusty galaxies with : A selection of "500 m-risers"
- Exploring the physics behind the non-thermal emission from star-forming galaxies detected in gamma rays
- LoTSS/HETDEX: Disentangling star formation and AGN activity in gravitationally-lensed radio-quiet quasars
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- A Spatially Resolved Radio Spectral Index Study of the Dwarf Irregular Galaxy NGC\,1569
- The morphology of star-forming gas and its alignment with galaxies and dark matter haloes in the EAGLE simulations
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