LOFAR 58 MHz Legacy Survey of the 3CRR Catalog
arXiv:2509.15115 · doi:10.1051/0004-6361/202556438
Abstract
The Low Frequency Array (LOFAR) is uniquely able to perform deep, 15" resolutions imaging at frequencies below 100 MHz. Observations in this regime, using the Low Band Antenna (LBA) system, are significantly affected by instrumental and ionospheric distortions. Recent developments in calibration techniques have enabled routine production of high-fidelity images at these challenging frequencies. The aim of this paper is to obtain images of the radio sources included in the Third Cambridge catalog, second revised version (3CRR), at an observing frequency of 58 MHz, with an angular resolution of 15"and sensitivity to both compact and diffuse radio emission. This work also aims to produce accurate flux measurements for all sources. This dataset is designed to serve as a reference for low-frequency radio galaxy studies and future spectral aging analyses. We deliver 58. MHz radio images for the complete 3CRR sample including flux density measurements. We determined that the LBA has an accurate flux density scale with an average flux uncertainty of 10%. This is an important confirmation for any future works using the LOFAR LBA system. With these results we characterize the bright radio galaxy population with new high-resolution low-frequency images. We also provide high-resolution models of these sources which will be useful for calibrating future surveys. This legacy survey significantly expands the available high-resolution data at low frequencies and is the first fully imaged high-resolution sample at ultra low frequencies (< 100 MHz). It lays the foundation for future studies of radio galaxy physics, low-energy cosmic-ray populations, and the interplay between radio jets and their environments.
Submitted to A&A. 20 pages, 10 figures
References in corpus (22)
- WSClean: an implementation of a fast, generic wide-field imager for radio astronomy
- The VLA Low-frequency Sky Survey
- An optimized algorithm for multi-scale wideband deconvolution of radio astronomical images
- The Rapid ASKAP Continuum Survey I: Design and First Results
- The Very Large Array Low-frequency Sky Survey Redux (VLSSr)
- Revisiting the radio interferometer measurement equation. I. A full-sky Jones formalism
- The LOFAR LBA Sky Survey I. survey description and preliminary data release
- Sub-arcsecond imaging with the International LOFAR Telescope I. Foundational calibration strategy and pipeline
- The Rapid ASKAP Continuum Survey IV: continuum imaging at 1367.5 MHz and the first data release of RACS-mid
- High-resolution VLA low radio frequency observations of the Perseus cluster: radio lobes, mini-halo and bent-jet radio galaxies
- Compression of interferometric radio-astronomical data
- Cassiopeia A, Cygnus A, Taurus A, and Virgo A at ultra-low radio frequencies
- LOFAR reveals the giant: a low-frequency radio continuum study of the outflow in the nearby FR I radio galaxy 3C 31
- Black hole jets on the scale of the Cosmic Web
- The LOFAR LBA Sky Survey II. First data release
- Abell 1033: Radio halo and gently reenergized tail at 54 MHz
- LOFAR high-band antenna observations of the Perseus cluster
- Ordered magnetic fields around the 3C 84 central black hole
- ViCTORIA project: The LOFAR HBA Virgo Cluster Survey
- Pushing subarcsecond resolution imaging down to 30 MHz with the trans-European International LOFAR Telescope
- Characterization of the decametre sky at subarcminute resolution
- Revisiting radio variability of the blazar 3C 454.3