Papers
Topics
Authors
Recent
Search
2000 character limit reached

ASKAP discovery of a pair of large radio bubbles: on the origin of odd radio circles

Published 24 Aug 2026 in astro-ph.GA | (2608.22835v1)

Abstract: We report the serendipitous discovery of a large, low-surface-brightness radio bubble in 944 MHz continuum data from the ASKAP Evolutionary Map of the Universe (EMU) survey. The structure, centred on the elliptical galaxy LEDA 217397 at a redshift of z=0.040z=0.040, spans \sim8.4 arcmin, corresponding to a projected diameter of \sim399 kpc, and consists of two partly overlapping shells both with radii of \sim114 kpc. The integrated flux density of the bubble is 56.8±2.956.8\pm2.9 mJy at 944 MHz, implying a rest-frame 1.4 GHz luminosity of \sim 1.4×10<sup>231.4\times10<sup>{23} W Hz<sup>1<sup>{-1}. Combining the EMU measurement with MWA GLEAM-X data at 88--185 MHz, we derive a steep integrated spectral index of α=1.04±0.04α=-1.04\pm0.04, and a two-frequency spectral-index map suggesting a possible exterior flattening. Spectral Energy Distribution (SED) fitting indicates a massive (logM/M=10.97±0.09\log M_{\ast}/M\odot = 10.97\pm0.09), quiescent (SFR=0.025±0.083M0.025\pm0.083\,M\odot yr<sup>1<sup>{-1}) early-type host with no mid-infrared AGN signature and no overdense environment. We compare the bubble with odd radio circles (ORCs) and large radio shells, and discuss three scenarios for its origin: a starburst-driven wind, a merger-driven shock, and AGN jet-inflated bubbles. The starburst wind is disfavoured on energetic grounds (\gtrsim10{59}</sup>ergrequiredversus</sup> erg required versus \sim10<sup>810<sup>{8} yr electron lifetimes), and neither a halo-scale merger shock nor a spherical nuclear blast wave can explain the unusually regular, double-shell geometry; a bipolar nuclear outburst -- a relic AGN jet episode, possibly triggered by a supermassive-black-hole merger -- provides the most natural explanation, with later shocks possibly re-energising the plasma. Deeper broad-band radio, polarimetric, spectroscopic and X-ray observations are needed to confirm its nature.

Summary

No one has generated a summary of this paper yet.

Paper to Video (Beta)

No one has generated a video about this paper yet.

Whiteboard

No one has generated a whiteboard explanation for this paper yet.

Continue Learning

We haven't generated follow-up questions for this paper yet.

Tweets

Sign up for free to view the 1 tweet with 0 likes about this paper.