Nearby galaxies in the LOFAR Two-metre Sky Survey II. The magnetic field-gas relation
arXiv:2208.11068 · doi:10.1051/0004-6361/202243328
Abstract
Context. Magnetic fields are key to understand galaxy evolution, regulating stellar feedback and star formation in galaxies. Aims. We probe the origin of magnetic fields in late-type galaxies, measuring magnetic field strengths, exploring whether magnetic fields are only passive constituents of the interstellar medium, or whether they are active constituents being part of the local energy equilibrium. Methods. We measure equipartition magnetic field strengths in 39 galaxies from LoTSS-DR2 using LOFAR observations at 144 MHz with 6 arcsec angular resolution which (0.1-0.7 kpc). For a subset of 9 galaxies, we obtain atomic and molecular mass surface densities using HI and CO(2-1) data, from the THINGS and HERACLES surveys, respectively. These data are at 13 arcsec angular resolution, which corresponds to 0.3-1.2 kpc at the distances of our galaxies. We measure kinetic energy densities using HI and CO velocity dispersions. Results. We found a mean magnetic field strength of 3.6-12.5 G with a mean of G across the full sample. The magnetic field strength has the tightest and steepest relation with the total gas surface density with . The relation with the star-formation rate surface density and molecular gas surface density has significantly flatter slopes. After accounting for the influence of cosmic-ray transport, we found an even steeper relation of . Conclusions. These results suggest that the magnetic field is regulated by a - relation, which has its origin in the saturation of the small-scale dynamo. This is borne out by an agreement of kinetic and magnetic energy densities although local deviations do exist in particular in areas of high kinetic energy densities where the magnetic field is sub-dominant.
Accepted to Astronomy and Astrophysics. 13 pages plus appendix including atlas of magnetic fields
References in corpus (33)
- The Sixteenth Data Release of the Sloan Digital Sky Surveys: First Release from the APOGEE-2 Southern Survey and Full Release of eBOSS Spectra
- The GALEX Ultraviolet Atlas of Nearby Galaxies
- The LOFAR Two-metre Sky Survey - I. Survey Description and Preliminary Data Release
- The LOFAR Two-metre Sky Survey -- V. Second data release
- Cool Outflows in Galaxies and their Implications
- Revised equipartition & minimum energy formula for magnetic field strength estimates from radio synchrotron observations
- What is Driving the HI Velocity Dispersion?
- Magnetism in the spiral galaxy NGC 6946: magnetic arms, depolarization rings, dynamo modes and helical fields
- The Radio Spectral Energy Distribution and Star Formation Rate Calibration in Galaxies
- The effects of cosmic rays on the formation of Milky Way-mass galaxies in a cosmological context
- High-resolution radio continuum survey of M33 II. Thermal and nonthermal emission
- The nature of the low-frequency emission of M51: First observations of a nearby galaxy with LOFAR
- The LOFAR Two-metre Sky Survey Deep fields: The star formation rate - radio luminosity relation at low frequencies
- The supernova-regulated ISM. II. The mean magnetic field
- The Radio Continuum-Star Formation Rate Relation in WSRT SINGS Galaxies
- The dependence of cosmic ray driven galactic winds on halo mass
- The Westerbork SINGS Survey: I. Overview and Image Atlas
- High-resolution radio continuum survey of M33: III. Magnetic fields
- New constraints on the magnetization of the cosmic web using LOFAR Faraday rotation observations
- Magnetic fields in the nearby spiral galaxy IC 342: A multi-frequency radio polarization study
- Cosmic rays and non-thermal emission in simulated galaxies: III. probing cosmic ray calorimetry with radio spectra and the FIR-radio correlation
- Turbulent dynamo in the two-phase interstellar medium
- Simulating radio synchrotron emission in star-forming galaxies: small-scale magnetic dynamo and the origin of the far infrared-radio correlation
- Magnetic fields and gas in the cluster-influenced spiral galaxy NGC 4254 - II. Structures of magnetic fields
- Nearby galaxies in LoTSS-DR2: insights into the non-linearity of the radio-SFR relation
- Cosmic rays and non-thermal emission in simulated galaxies. I. Electron and proton spectra compared to Voyager-1 data
- Discovery of massive star formation quenching by nonthermal effects in the center of NGC 1097
- CHANG-ES XXI. Transport processes and the X-shaped magnetic field of NGC 4217: off-center superbubble structure
- A hydrodynamical study of outflows in starburst galaxies with different driving mechanisms
- Large-scale turbulent driving regulates star formation in high-redshift gas-rich galaxies
- An analytical dynamo solution for large-scale magnetic fields of galaxies
- Thermal and non-thermal components of the interstellar medium at sub-kiloparsec scales in galaxies
- Correlation of the radio continuum, infrared, and CO molecular emissions in NGC 3627
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