ASKAP reveals the radio tail structure of the Corkscrew Galaxy shaped by its passage through the Abell 3627 cluster

Fuente: arXiv
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Main Authors: Koribalski, Bärbel S., Duchesne, Stefan W., Lenc, Emil, Venturi, Tiziana, Botteon, Andrea, Shabala, Stanislav S., Vernstrom, Tessa, Carretti, Ettore, Norris, Ray P., Anderson, Craig, Hopkins, Andrew M., Riseley, C. J., Gupta, Nikhel, Velović, Velibor, -
Format: Preprint
Published: 2024
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author Koribalski, Bärbel S.
Duchesne, Stefan W.
Lenc, Emil
Venturi, Tiziana
Botteon, Andrea
Shabala, Stanislav S.
Vernstrom, Tessa
Carretti, Ettore
Norris, Ray P.
Anderson, Craig
Hopkins, Andrew M.
Riseley, C. J.
Gupta, Nikhel
Velović, Velibor
-
author_facet Koribalski, Bärbel S.
Duchesne, Stefan W.
Lenc, Emil
Venturi, Tiziana
Botteon, Andrea
Shabala, Stanislav S.
Vernstrom, Tessa
Carretti, Ettore
Norris, Ray P.
Anderson, Craig
Hopkins, Andrew M.
Riseley, C. J.
Gupta, Nikhel
Velović, Velibor
-
contents Among the bent tail radio galaxies common in galaxy clusters are some with long, collimated tails (so-called head-tail galaxies) shaped by their interactions with the intracluster medium (ICM). Here we report the discovery of intricate filamentary structure in and beyond the ~28' (570 kpc) long, helical radio tail of the Corkscrew Galaxy (1610-60.5, ESO137-G007), which resides in the X-ray bright cluster Abell 3627 (D = 70 Mpc). Deep radio continuum data were obtained with wide-field Phased Array Feeds on the Australian Square Kilometer Array Pathfinder (ASKAP) at 944 MHz and 1.4 GHz. The Corkscrew Galaxy is located 15' north of the prominent wide-angle tail (WAT) radio galaxy 1610-60.8 (ESO137-G006) near the cluster centre. While the bright (young) part of its radio tail is highly collimated, the faint (old) part shows increasing oscillation amplitudes, break-ups, and filaments. We find a stunning set of arc-shaped radio filaments beyond and mostly orthogonal to the collimated Corkscrew tail end, forming a partial bubble. This may be the first detection of a "proto-lobe" seen in 3D MHD simulations by Nolting et al. (2019), formed by the face-on impact of the Corkscrew Galaxy with a shock front in the cluster outskirts. Interactions of the radio galaxy tail with the ICM are likely responsible for the tail collimation and shear forces within the ICM for its increasingly filamentary structure. We also report the discovery of small (~20-30 kpc) ram-pressure stripped radio tails in four Abell 3627 cluster galaxies.
format Preprint
id arxiv_https___arxiv_org_abs_2405_04374
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle ASKAP reveals the radio tail structure of the Corkscrew Galaxy shaped by its passage through the Abell 3627 cluster
Koribalski, Bärbel S.
Duchesne, Stefan W.
Lenc, Emil
Venturi, Tiziana
Botteon, Andrea
Shabala, Stanislav S.
Vernstrom, Tessa
Carretti, Ettore
Norris, Ray P.
Anderson, Craig
Hopkins, Andrew M.
Riseley, C. J.
Gupta, Nikhel
Velović, Velibor
-
Astrophysics of Galaxies
Among the bent tail radio galaxies common in galaxy clusters are some with long, collimated tails (so-called head-tail galaxies) shaped by their interactions with the intracluster medium (ICM). Here we report the discovery of intricate filamentary structure in and beyond the ~28' (570 kpc) long, helical radio tail of the Corkscrew Galaxy (1610-60.5, ESO137-G007), which resides in the X-ray bright cluster Abell 3627 (D = 70 Mpc). Deep radio continuum data were obtained with wide-field Phased Array Feeds on the Australian Square Kilometer Array Pathfinder (ASKAP) at 944 MHz and 1.4 GHz. The Corkscrew Galaxy is located 15' north of the prominent wide-angle tail (WAT) radio galaxy 1610-60.8 (ESO137-G006) near the cluster centre. While the bright (young) part of its radio tail is highly collimated, the faint (old) part shows increasing oscillation amplitudes, break-ups, and filaments. We find a stunning set of arc-shaped radio filaments beyond and mostly orthogonal to the collimated Corkscrew tail end, forming a partial bubble. This may be the first detection of a "proto-lobe" seen in 3D MHD simulations by Nolting et al. (2019), formed by the face-on impact of the Corkscrew Galaxy with a shock front in the cluster outskirts. Interactions of the radio galaxy tail with the ICM are likely responsible for the tail collimation and shear forces within the ICM for its increasingly filamentary structure. We also report the discovery of small (~20-30 kpc) ram-pressure stripped radio tails in four Abell 3627 cluster galaxies.
title ASKAP reveals the radio tail structure of the Corkscrew Galaxy shaped by its passage through the Abell 3627 cluster
topic Astrophysics of Galaxies
url https://arxiv.org/abs/2405.04374