Observations of Carbon Radio Recombination Lines with the NenuFAR telescope. I. Cassiopeia A and Cygnus A

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Main Authors: Cros, Lucie, Gusdorf, Antoine, Salomé, Philippe, Stepkin, Sergiy, Zarka, Philippe, Salas, Pedro, Loh, Alan, Lesaffre, Pierre, Freundlich, Jonathan, Alves, Marta, Boulanger, François, Bracco, Andrea, Corbel, Stéphane, Gerin, Maryvonne, Goicoechea, Javier, Grenier, Isabelle, Grießmeier, Jean-Mathias, Houde, Martin, Konovalenko, Oleksandr, Marchal, Antoine, Marcowith, Alexandre, Mertens, Florent, Motte, Frédérique, Tagger, Michel, Tielens, Alexander, Theureau, Gilles, Tokarsky, Peter, Ulyanov, Oleg, Zakharenko, Vyacheslav
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Published: 2025
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author Cros, Lucie
Gusdorf, Antoine
Salomé, Philippe
Stepkin, Sergiy
Zarka, Philippe
Salas, Pedro
Loh, Alan
Lesaffre, Pierre
Freundlich, Jonathan
Alves, Marta
Boulanger, François
Bracco, Andrea
Corbel, Stéphane
Gerin, Maryvonne
Goicoechea, Javier
Grenier, Isabelle
Grießmeier, Jean-Mathias
Houde, Martin
Konovalenko, Oleksandr
Marchal, Antoine
Marcowith, Alexandre
Mertens, Florent
Motte, Frédérique
Tagger, Michel
Tielens, Alexander
Theureau, Gilles
Tokarsky, Peter
Ulyanov, Oleg
Zakharenko, Vyacheslav
author_facet Cros, Lucie
Gusdorf, Antoine
Salomé, Philippe
Stepkin, Sergiy
Zarka, Philippe
Salas, Pedro
Loh, Alan
Lesaffre, Pierre
Freundlich, Jonathan
Alves, Marta
Boulanger, François
Bracco, Andrea
Corbel, Stéphane
Gerin, Maryvonne
Goicoechea, Javier
Grenier, Isabelle
Grießmeier, Jean-Mathias
Houde, Martin
Konovalenko, Oleksandr
Marchal, Antoine
Marcowith, Alexandre
Mertens, Florent
Motte, Frédérique
Tagger, Michel
Tielens, Alexander
Theureau, Gilles
Tokarsky, Peter
Ulyanov, Oleg
Zakharenko, Vyacheslav
contents Carbon Radio Recombination Lines (CRRLs) at decametre wavelengths trace the diffuse phase of the interstellar medium (ISM) of the Galaxy. Their observation allows to measure physical parameters of this phase. We observed CRRLs with the recently commissioned New Extension in Nançay Upgrading LOFAR (NenuFAR) telescope towards two of the brightest sources at low-frequency (10-85 MHz): Cassiopeia A and Cygnus A (hereafter Cas A and Cyg A respectively), to measure the density n_e and temperature T_e of electrons in line-of-sight clouds. We used NenuFAR's beamforming mode, and we integrated several tens of hours on each source. The nominal spectral resolution was 95.4 Hz. We developed a pipeline to remove radio frequency interference (RFI) contamination and correct the baselines. We then fitted the spectral lines observed in absorption, associated to line-of-sight clouds. Cas A is the brightest source in the sky at low frequencies and represents an appropriate test bench for this new telescope. On this source, we detected 398 Cαlines between principal quantum numbers n=426 and n=826. Cαlines towards Cyg A were fainter. We stacked the signal by groups of a few tens of lines to improve the quality of our fitting process. On both sources we reached significantly higher S/N and spectral resolution than the most recent detections by the LOw Frequency ARray (LOFAR). The variation of line shape with n provides constraints on the physical properties of the clouds: T_e, n_e, the temperature T_0 of the radiation field, the mean turbulent velocity v_t and the typical size of the cloud. The NenuFAR observations sample a larger space volume than LOFAR's towards the same sources due to the differences in instrumental beamsizes, and the discrepancies highlight the sensitivity of low-frequency CRRLs as probes of the diffuse ISM, paving the way towards large area surveys of CRRLs in our Galaxy.
format Preprint
id arxiv_https___arxiv_org_abs_2506_08895
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Observations of Carbon Radio Recombination Lines with the NenuFAR telescope. I. Cassiopeia A and Cygnus A
Cros, Lucie
Gusdorf, Antoine
Salomé, Philippe
Stepkin, Sergiy
Zarka, Philippe
Salas, Pedro
Loh, Alan
Lesaffre, Pierre
Freundlich, Jonathan
Alves, Marta
Boulanger, François
Bracco, Andrea
Corbel, Stéphane
Gerin, Maryvonne
Goicoechea, Javier
Grenier, Isabelle
Grießmeier, Jean-Mathias
Houde, Martin
Konovalenko, Oleksandr
Marchal, Antoine
Marcowith, Alexandre
Mertens, Florent
Motte, Frédérique
Tagger, Michel
Tielens, Alexander
Theureau, Gilles
Tokarsky, Peter
Ulyanov, Oleg
Zakharenko, Vyacheslav
Astrophysics of Galaxies
Carbon Radio Recombination Lines (CRRLs) at decametre wavelengths trace the diffuse phase of the interstellar medium (ISM) of the Galaxy. Their observation allows to measure physical parameters of this phase. We observed CRRLs with the recently commissioned New Extension in Nançay Upgrading LOFAR (NenuFAR) telescope towards two of the brightest sources at low-frequency (10-85 MHz): Cassiopeia A and Cygnus A (hereafter Cas A and Cyg A respectively), to measure the density n_e and temperature T_e of electrons in line-of-sight clouds. We used NenuFAR's beamforming mode, and we integrated several tens of hours on each source. The nominal spectral resolution was 95.4 Hz. We developed a pipeline to remove radio frequency interference (RFI) contamination and correct the baselines. We then fitted the spectral lines observed in absorption, associated to line-of-sight clouds. Cas A is the brightest source in the sky at low frequencies and represents an appropriate test bench for this new telescope. On this source, we detected 398 Cαlines between principal quantum numbers n=426 and n=826. Cαlines towards Cyg A were fainter. We stacked the signal by groups of a few tens of lines to improve the quality of our fitting process. On both sources we reached significantly higher S/N and spectral resolution than the most recent detections by the LOw Frequency ARray (LOFAR). The variation of line shape with n provides constraints on the physical properties of the clouds: T_e, n_e, the temperature T_0 of the radiation field, the mean turbulent velocity v_t and the typical size of the cloud. The NenuFAR observations sample a larger space volume than LOFAR's towards the same sources due to the differences in instrumental beamsizes, and the discrepancies highlight the sensitivity of low-frequency CRRLs as probes of the diffuse ISM, paving the way towards large area surveys of CRRLs in our Galaxy.
title Observations of Carbon Radio Recombination Lines with the NenuFAR telescope. I. Cassiopeia A and Cygnus A
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2506.08895