English

The Intrinsic Sizes of Odd Radio Circles

Astrophysics of Galaxies 2024-04-11 v2

Abstract

A new class of radio source, the so-called Odd Radio Circles (ORCs), have been discovered by recent sensitive, large-area radio continuum surveys. The distances of these sources have so far relied on photometric redshifts of optical galaxies found at the centers of or near the ORCs. Here we present Gemini rest-frame optical spectroscopy of six galaxies at the centers of, or potentially associated with, the first five ORC discoveries. We supplement this with Legacy Survey imaging and Prospector fits to their griz+W1/W2 photometry. Of the three ORCs with central galaxies, all lie at distances (z = 0.27-0.55) that confirm the large intrinsic diameters of the radio circles (300-500 kpc). The central galaxies are massive (M1011MM_*\sim10^{11}M_\odot), red, unobscured ellipticals with old (\gtrsim1~Gyr) stellar populations. They have LINER spectral types that are shock- or AGN-powered. All three host low-luminosity, radio-quiet AGN. The similarity of their central galaxies are consistent with a common origin, perhaps as a blastwave from an ancient starburst. The other two ORCs are adjacent and have no prominent central galaxies. However, the z=0.25 disk galaxy that lies between them hosts a Type 2, moderate-luminosity AGN. They may instead be the lobes of a radio jet from this AGN.

Keywords

Cite

@article{arxiv.2312.06387,
  title  = {The Intrinsic Sizes of Odd Radio Circles},
  author = {David Rupke and Alison Coil and Kelly Whalen and John Moustakas and Christy Tremonti and Serena Perrotta},
  journal= {arXiv preprint arXiv:2312.06387},
  year   = {2024}
}

Comments

ApJ, in press. Changes to match accepted version; only significant change is addition of Fig. 3