Initial LOFAR observations of Epoch of Reionization windows: II. Diffuse polarized emission in the ELAIS-N1 field
V. Jelic, A. G. de Bruyn, M. Mevius, F. B. Abdalla, K. M. B. Asad, G., Bernardi, M. A. Brentjens, S. Bus, E. Chapman, B. Ciardi, S. Daiboo, E. R., Fernandez, A. Ghosh, G. Harker, H. Jensen, S. Kazemi, L. V. E. Koopmans, P., Labropoulos, O. Martinez-Rubi, G. Mellema

TL;DR
This paper characterizes the polarized foreground emission in the ELAIS-N1 field using LOFAR and WSRT data, revealing complex structures and implications for Epoch of Reionization signal extraction.
Contribution
It provides detailed imaging and analysis of polarized emission at low frequencies, highlighting the complexity of foregrounds relevant for EoR studies.
Findings
Galactic emission brightness temperature is about 4 K in polarized intensity.
Fractional polarization at 150 MHz is approximately 1.5%.
Diffuse total intensity emission is not detected, consistent with higher frequency results.
Abstract
This study aims to characterise the polarized foreground emission in the ELAIS-N1 field and to address its possible implications for the extraction of the cosmological 21-cm signal from the Low-Frequency Array - Epoch of Reionization (LOFAR-EoR) data. We use the high band antennas of LOFAR to image this region and RM-synthesis to unravel structures of polarized emission at high Galactic latitudes. The brightness temperature of the detected Galactic emission is on average 4 K in polarized intensity and covers the range from -10 to +13rad m^-2 in Faraday depth. The total polarized intensity and polarization angle show a wide range of morphological features. We have also used the Westerbork Synthesis Radio Telescope (WSRT) at 350 MHz to image the same region. The LOFAR and WSRT images show a similar complex morphology, at comparable brightness levels, but their spatial correlation is very…
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Taxonomy
TopicsRadio Astronomy Observations and Technology · Astrophysics and Cosmic Phenomena · Galaxies: Formation, Evolution, Phenomena
