Deciphering the radio-star formation correlation on kpc-scales I. Adaptive kernel smoothing experiments
arXiv:1911.02253 · doi:10.1051/0004-6361/201935923
Abstract
(abridged) Within nearby galaxies, variations in the radio-FIR correlation have been observed, mainly because the cosmic ray electrons migrate before they lose their energy via synchrotron emission or escape. The major cosmic ray electron transport mechanisms within the plane of galactic disks are diffusion and streaming. A predicted radio continuum map can be obtained by convolving the map of comic ray electron sources, represented by that of the star formation, with adaptive Gaussian and exponential kernels. The ratio between the smoothing lengthscales at 6cm and 20cm can be used to distinguish between diffusion and streaming as the dominant transport mechanism. Star formation maps of eight rather face-on local and Virgo cluster spiral galaxies were constructed from Spitzer and Herschel infrared and GALEX UV observations.These maps were convolved with adaptive Gaussian and exponential smoothing kernels to obtain model radio continuum emission maps. It is found that in asymmetric ridges of polarized radio continuum emission the total power emission is enhanced with respect to the star formation rate. The typical lengthscale for the transport of cosmic ray electrons is l=0.9kpc at 6cm and l=1.8kpc at 20cm. Perturbed spiral galaxies tend to have smaller lengthscales. This is a natural consequence of the enhancement of the magnetic field caused by the interaction. The discrimination between the two cosmic ray electron transport mechanisms, diffusion and streaming, is based on (i) the convolution kernel (Gaussian or exponential),(ii) the dependence of the smoothing kernel on the local magnetic field and hence on the local star formation rate, (iii) the ratio between the two smoothing lengthscales via the frequency-dependence of the smoothing kernel, and (iv) the dependence of the smoothing kernel on the ratio between the ordered and the turbulent magnetic field.
42 pages, accepted for publication in A&A
References in corpus (13)
- Infrared Emission from Interstellar Dust. IV. The Silicate-Graphite-PAH Model in the Post-Spitzer Era
- Revised equipartition & minimum energy formula for magnetic field strength estimates from radio synchrotron observations
- Radio sources in the 6dFGS: Local luminosity functions at 1.4 GHz for star-forming galaxies and radio-loud AGN
- SHARC-2 350 Micron Observations of Distant Submillimeter Selected Galaxies
- The SCUBA HAlf Degree Extragalactic Survey (SHADES) - III. Identification of radio and mid-infrared counterparts to submillimetre galaxies
- Connecting Far-Infrared and Radio Morphologies of Disk Galaxies: Cosmic-Ray Electron Diffusion After Star Formation Episodes
- High-resolution radio continuum survey of M33 II. Thermal and nonthermal emission
- The Radio Continuum-Star Formation Rate Relation in WSRT SINGS Galaxies
- A multi-resolution analysis of the radio-FIR correlation in the Large Magellanic Cloud
- Radio haloes in nearby galaxies modelled with 1D cosmic-ray transport using SPINNAKER
- The characteristic polarized radio continuum distribution of cluster spiral galaxies
- Magnetic fields and gas in the cluster-influenced spiral galaxy NGC 4254 - II. Structures of magnetic fields
- Magnetic fields and gas in the cluster influenced spiral galaxy NGC4254 - I. Radio and X-rays observations
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- Cosmic-ray transport and gamma-ray emission in M31
- CHANG-ES XXXIV: a 20 kpc radio bubble in the halo of the star-forming galaxy NGC 4217
- Low-Frequency Turnover Star Forming Galaxies I: Radio Continuum Observations and Global Properties
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- WALLABY Pre-Pilot Survey: Radio Continuum Properties of the Eridanus Supergroup
- Low radio frequency observations of seven nearby galaxies with GMRT
- ESO 137-001 -- a jellyfish galaxy model
- Radio-FIR correlation- A probe into cosmic ray propagation in the nearby galaxy IC 342
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