Revealing Hanny's Voorwerp: radio observations of IC 2497

We present multi-wavelength radio observations in the direction of the spiral galaxy IC 2497 and the neighbouring emission nebula known as "Hanny's Voorwerp". Our WSRT continuum observations at 1.4 GHz and 4.9 GHz, reveal the presence of extended emission at the position of the nebulo...

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Main Authors: Jozsa, G, Garrett, M, Oosterloo, T, Rampadarath, H, Paragi, Z, Arkel, H, Lintott, C, Keel, W, Schawinski, K, Edmondson, E
Format: Journal article
Language:English
Published: 2009
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author Jozsa, G
Garrett, M
Oosterloo, T
Rampadarath, H
Paragi, Z
Arkel, H
Lintott, C
Keel, W
Schawinski, K
Edmondson, E
author_facet Jozsa, G
Garrett, M
Oosterloo, T
Rampadarath, H
Paragi, Z
Arkel, H
Lintott, C
Keel, W
Schawinski, K
Edmondson, E
author_sort Jozsa, G
collection OXFORD
description We present multi-wavelength radio observations in the direction of the spiral galaxy IC 2497 and the neighbouring emission nebula known as "Hanny's Voorwerp". Our WSRT continuum observations at 1.4 GHz and 4.9 GHz, reveal the presence of extended emission at the position of the nebulosity, although the bulk of the emission remains unresolved at the centre of the galaxy. e-VLBI 1.65 GHz observations show that on the milliarcsecond-scale a faint central compact source is present in IC 2497 with a brightness temperature in excess of 4E5 K. With the WSRT, we detect a large reservoir of neutral hydrogen in the proximity of IC 2497. One cloud complex with a total mass of 5.6E9 Msol to the South of IC 2497, encompasses Hanny's Voorwerp. Another cloud complex is located at the position of a small galaxy group ~100 kpc to the West of IC 2497 with a mass of 2.9E9 Msol. Our data hint at a physical connection between both complexes. We also detect HI in absorption against the central continuum source of IC 2497. Our observations strongly support the hypothesis that Hanny's Voorwerp is being ionised by an AGN in the centre of IC 2497. In this scenario, a plasma jet associated with the AGN, clears a path through the ISM/IGM in the direction towards the nebulosity. The large-scale radio continuum emission possibly originates from the interaction between this jet and the large cloud complex that Hanny's Voorwerp is embedded in. The HI kinematics do not fit regular rotation, thus the cloud complex around IC 2497 is probably of tidal origin. From the HI absorption against the central source, we derive a lower limit of 2.8E21 +- 0.4E21 atoms/sqcm to the HI column density. However, assuming non-standard conditions for the detected gas, we cannot exclude the possibility that the AGN in the centre of IC 2497 is Compton-thick.
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spelling oxford-uuid:a0233d1c-9e24-49b4-8182-dad4930ce1b32022-03-27T02:03:16ZRevealing Hanny's Voorwerp: radio observations of IC 2497Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:a0233d1c-9e24-49b4-8182-dad4930ce1b3EnglishSymplectic Elements at Oxford2009Jozsa, GGarrett, MOosterloo, TRampadarath, HParagi, ZArkel, HLintott, CKeel, WSchawinski, KEdmondson, EWe present multi-wavelength radio observations in the direction of the spiral galaxy IC 2497 and the neighbouring emission nebula known as "Hanny's Voorwerp". Our WSRT continuum observations at 1.4 GHz and 4.9 GHz, reveal the presence of extended emission at the position of the nebulosity, although the bulk of the emission remains unresolved at the centre of the galaxy. e-VLBI 1.65 GHz observations show that on the milliarcsecond-scale a faint central compact source is present in IC 2497 with a brightness temperature in excess of 4E5 K. With the WSRT, we detect a large reservoir of neutral hydrogen in the proximity of IC 2497. One cloud complex with a total mass of 5.6E9 Msol to the South of IC 2497, encompasses Hanny's Voorwerp. Another cloud complex is located at the position of a small galaxy group ~100 kpc to the West of IC 2497 with a mass of 2.9E9 Msol. Our data hint at a physical connection between both complexes. We also detect HI in absorption against the central continuum source of IC 2497. Our observations strongly support the hypothesis that Hanny's Voorwerp is being ionised by an AGN in the centre of IC 2497. In this scenario, a plasma jet associated with the AGN, clears a path through the ISM/IGM in the direction towards the nebulosity. The large-scale radio continuum emission possibly originates from the interaction between this jet and the large cloud complex that Hanny's Voorwerp is embedded in. The HI kinematics do not fit regular rotation, thus the cloud complex around IC 2497 is probably of tidal origin. From the HI absorption against the central source, we derive a lower limit of 2.8E21 +- 0.4E21 atoms/sqcm to the HI column density. However, assuming non-standard conditions for the detected gas, we cannot exclude the possibility that the AGN in the centre of IC 2497 is Compton-thick.
spellingShingle Jozsa, G
Garrett, M
Oosterloo, T
Rampadarath, H
Paragi, Z
Arkel, H
Lintott, C
Keel, W
Schawinski, K
Edmondson, E
Revealing Hanny's Voorwerp: radio observations of IC 2497
title Revealing Hanny's Voorwerp: radio observations of IC 2497
title_full Revealing Hanny's Voorwerp: radio observations of IC 2497
title_fullStr Revealing Hanny's Voorwerp: radio observations of IC 2497
title_full_unstemmed Revealing Hanny's Voorwerp: radio observations of IC 2497
title_short Revealing Hanny's Voorwerp: radio observations of IC 2497
title_sort revealing hanny s voorwerp radio observations of ic 2497
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