On the nature of LOFAR RMs and new constraints on magnetic fields in cosmic filaments and on magnetogenesis scenarios
arXiv:2411.13499 · doi:10.1051/0004-6361/202451333
Abstract
The measurement of magnetic fields in cosmic web filaments can be used to reveal the magnetogenesis of the Universe. In previous work, we produced first estimates of the field strength and its redshift evolution using the Faraday Rotation Measure (RM) catalogue of extragalactic background sources at low frequency obtained with LOFAR observations. Here we refine our analysis by selecting sources with low Galactic RM, which reduces its residual contamination. We also conduct a comprehensive analysis of the different contributions to the extragalactic RMs along the line of sight, and confirm that they are dominated by the cosmic filaments component, with only 21 percent originating in galaxy clusters and the circumgalactic medium (CGM) of galaxies. We find a possible hint of a shock at the virial radius of massive galaxies. We also find that the fractional polarization of background sources might be a valuable CGM tracer. The newly selected RMs have a steeper evolution with redshift than previously found. The field strength in filaments () and its evolution are estimated assuming evolves as a power-law . Our analysis finds an average strength at of --15~nG, with an error of 4 nG, and a slope --, which is steeper than what we previously found. The comoving field has a slope of [0.3, 0.6 that is consistent with being invariant with redshift. Primordial magnetogenesis scenarios are favoured by our data, together with a sub-dominant astrophysical-origin RM component increasing with redshift.
Accepted for publication on A&A
References in corpus (30)
- Array Programming with NumPy
- The LOFAR Two-metre Sky Survey -- V. Second data release
- Turbulence and Magnetic Fields in the Large Scale Structure of the Universe
- Strong magnetic fields in normal galaxies at high redshifts
- Stellar Masses and SFRs for 1M Galaxies from SDSS and WISE
- Estimating extragalactic Faraday rotation
- A Global Probe of Cosmic Magnetic Fields to High Redshifts
- Cluster Magnetic Fields from Galactic Outflows
- Calibration of the optical mass proxy for clusters of galaxies and an update of the WHL12 cluster catalog
- Magnetic Field Seeding by Galactic Winds
- Simulations of extragalactic magnetic fields and of their observables
- A radio spectral index map and catalogue at 147-1400 MHz covering 80 per cent of the sky
- Structures of the magnetoionic media around the FR I radio galaxies 3C 31 and Hydra A
- Simulated X-ray galaxy clusters at the virial radius: slopes of the gas density, temperature and surface brightness profiles
- The SINFONI MgII Program for Line Emitters (SIMPLE): Discovering starbursts near QSO sight-lines
- New Perspective on Galaxy Outflows From the First Detection of Both Intrinsic and Traverse Metal-Line Absorption
- Differences in Faraday Rotation Between Adjacent Extragalactic Radio Sources as a Probe of Cosmic Magnetic Fields
- Faraday Rotation from Magnesium II Absorbers towards Polarized Background Radio Sources
- Magnetic field strength in cosmic web filaments
- The Faraday Rotation Measure Grid of the LOFAR Two-metre Sky Survey: Data Release 2
- Magnetic field evolution in cosmic filaments with LOFAR data
- Detection of magnetic fields in the circumgalactic medium of nearby galaxies using Faraday rotation
- Origin of Magnetic Field in the Intracluster Medium: Primordial or Astrophysical?
- Constraints on Large-Scale Magnetic Fields in the Intergalactic Medium Using Cross-Correlation Methods
- Constraints on primordial magnetic fields from magnetically-induced perturbations: current status and future perspectives with LiteBIRD and future ground based experiments
- Magnetic field disorder and Faraday effects on the polarization of extragalactic radio sources
- S-PASS/ATCA: a window on the magnetic universe in the southern hemisphere
- The detection of cluster magnetic fields via radio source depolarisation
- Polarized accretion shocks from the cosmic web
- Probing magnetic fields in the circumgalactic medium using polarization data from MIGHTEE