The Faraday Rotation Measure Grid of the LOFAR Two-metre Sky Survey: Data Release 2
S. P. O'Sullivan, T. W. Shimwell, M. J. Hardcastle, C. Tasse, G., Heald, E. Carretti, M. Br\"uggen, V. Vacca, C. Sobey, C. L. Van Eck, C., Horellou, R. Beck, M. Bilicki, S. Bourke, A. Botteon, J. H. Croston, A., Drabent, K. Duncan, V. Heesen, S. Ideguchi, M. Kirwan, L. Lawlor

TL;DR
This paper presents a high-precision Faraday rotation measure catalogue derived from LOFAR survey data, enabling detailed studies of cosmic magnetic fields with a large, reliable set of extragalactic sources and pulsars.
Contribution
The paper introduces a new RM catalogue from LOFAR DR2 with 2461 sources, offering high accuracy and extensive host galaxy and redshift data, improving the resource for cosmic magnetism research.
Findings
Catalogue contains 2461 extragalactic RMs with median uncertainty 0.06 rad/m^2.
Detected polarization in about 0.2% of sources, median degree 1.8%.
Identified 25 pulsars with high polarization levels.
Abstract
A Faraday rotation measure (RM) catalogue, or RM Grid, is a valuable resource for the study of cosmic magnetism. Using the second data release (DR2) from the LOFAR Two-metre Sky Survey (LoTSS), we have produced a catalogue of 2461 extragalactic high-precision RM values across 5720 deg of sky (corresponding to a polarized source areal number density of 0.43 deg). The linear polarization and RM properties were derived using RM synthesis from the Stokes and channel images at an angular resolution of 20'' across a frequency range of 120 to 168 MHz with a channel bandwidth of 97.6 kHz. The fraction of total intensity sources ( mJy beam) found to be polarized was 0.2%. The median detection threshold was 0.6 mJy beam (), with a median RM uncertainty of 0.06 rad m (although a systematic uncertainty of up to 0.3 rad m…
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