2022A&A...664A..25K


Query : 2022A&A...664A..25K

2022A&A...664A..25K - Astronomy and Astrophysics, volume 664A, 25-25 (2022/8-1)

Seeing the forest and the trees: A radio investigation of the ULIRG Mrk 273.

KUKRETI P., MORGANTI R., BONDI M., OOSTERLOO T., TADHUNTER C., MORABITO L.K., ADAMS E.A.K., ADEBAHR B., DE BLOK W.J.G., DE GASPERIN F., DRABENT A., HESS K.M., IVASHINA M.V., KUTKIN A., MIKA A.M., OOSTRUM L.C., SHIMWELL T.W., VAN DER HULST J.M., VAN LEEUWEN J., VAN WEEREN R.J., VOHL D. and ZIEMKE J.

Abstract (from CDS):

Galaxy mergers have been observed to trigger nuclear activity by feeding gas to the central supermassive black hole. One such class of objects are Ultra Luminous InfraRed Galaxies (ULIRGs), which are mostly late stage major mergers of gas-rich galaxies. Recently, large-scale (∼100 kpc) radio continuum emission has been detected in a select number of ULIRGs, all of which also harbour powerful Active Galactic Nuclei (AGN). This hints at the presence of large-scale radio emission being evidence for nuclear activity. Exploring the origin of this radio emission and its link to nuclear activity requires high sensitivity multi-frequency data. We present such an analysis of the ULIRG Mrk 273. Using the International LOFAR telescope (ILT), we detected spectacular large-scale arcs in this system. This detection includes, for the first time, a giant ∼190 kpc arc in the north. We propose these arcs are fuelled by a low power radio AGN triggered by the merger. We also identified a bright ∼45 kpc radio ridge, which is likely related to the ionised gas nebula in that region. We combined this with high sensitivity data from APERture Tile In Focus (Apertif) and archival data from the Very Large Array (VLA) to explore the spectral properties. The ILT simultaneously allowed us to probe the nucleus at a resolution of ∼0.3'', where we detected three components, and, for the first time, diffuse emission around these components. Combining this with archival high frequency VLA images of the nucleus allowed us to detect absorption in one component, and a steep spectrum radio AGN in another. We then extrapolate from this case study to the importance of investigating the presence of radio emission in more ULIRGs and what it can tell us about the link between mergers and the presence of radio activity.

Abstract Copyright: © P. Kukreti et al. 2022

Journal keyword(s): galaxies: active - radio continuum: galaxies - galaxies: individual: Mrk 273 - galaxies: jets - galaxies: interactions - techniques: high angular resolution

VizieR on-line data: <Available at CDS (J/A+A/664/A25): list.dat fits/*>

Simbad objects: 16

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Number of rows : 16
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 IRAS 01003-2238 Sy2 01 02 49.9920152640 -22 21 57.262136544   18.62 18.9 17.83   ~ 164 0
2 ICRF J054236.1+495107 Sy1 05 42 36.13789710 +49 51 07.2337139   18.45 17.80 17.210   ~ 1493 1
3 MCG+05-16-010 AGN 06 52 02.5060831464 +27 27 39.387328884   14.9       ~ 81 1
4 3C 196 Sy1 08 13 36.0561170112 +48 13 02.644966020   18.36 17.79     ~ 551 2
5 M 82 AGN 09 55 52.430 +69 40 46.93 9.61 9.30 8.41     ~ 5861 6
6 NGC 3079 Sy2 10 01 57.8789863992 +55 40 47.449758324 11.57 11.54 10.86     ~ 1391 3
7 NGC 3690 IG 11 28 31.0 +58 33 41   13.19 12.86     ~ 978 4
8 Mrk 231 Sy1 12 56 14.2341182928 +56 52 25.238373852   14.68 13.84     ~ 1989 3
9 3C 286 Sy1 13 31 08.2883506368 +30 30 32.960091564   17.51 17.25     ~ 4341 2
10 QSO B1337+637 QSO 13 39 23.7837290376 +63 28 58.421159328   19.38 19.30     ~ 61 0
11 2MFGC 11079 EmG 13 44 22.3851973344 +55 57 04.837377168           ~ 10 0
12 Mrk 273 Sy2 13 44 42.1781 +55 53 12.819   15.68 14.91     ~ 913 3
13 ICRF J134934.6+534117 Sy1 13 49 34.65661554 +53 41 17.0400909   17.95 17.67 17.06   ~ 142 1
14 LEDA 90196 Sy2 15 02 31.9755844913 +14 21 34.926031528   20.69 20.13     ~ 56 0
15 IC 4553 SyG 15 34 57.22396 +23 30 11.6084   14.76 13.88     ~ 2961 4
16 SDSS J211824.06+001729.4 QSO 21 18 24.0612167328 +00 17 29.471594208   20.21 19.66     ~ 15 0

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