English

A first Chandra view of the cool core cluster A1668: offset cooling and AGN feedback cycle

Astrophysics of Galaxies 2021-04-28 v1 Cosmology and Nongalactic Astrophysics

Abstract

We present a multi-wavelength analysis of the galaxy cluster A1668, performed by means of new EVLA and Chandra observations and archival Hα\alpha data. The radio images exhibit a small central source (\sim14 kpc at 1.4 GHz) with L1.4 GHz_{\text{1.4 GHz}} \sim6 \cdot 1023^{23} W Hz1^{-1}. The mean spectral index between 1.4 GHz and 5 GHz is \sim -1, consistent with the usual indices found in BCGs. The cooling region extends for 40 kpc, with bolometric X-ray luminosity Lcool=1.9±0.1_{\text{cool}} = 1.9\pm 0.1 \cdot 1043^{43} erg s1^{-1}. We detect an offset of \sim 6 kpc between the cluster BCG and the X-ray peak, and another offset of \sim 7.6 kpc between the Hα\alpha and the X-ray peaks. We discuss possible causes for these offsets, which suggest that the coolest gas is not condensing directly from the lowest-entropy gas. In particular, we argue that the cool ICM was drawn out from the core by sloshing, whereas the Hα\alpha filaments were pushed aside from the expanding radio galaxy lobes. We detect two putative X-ray cavities, spatially associated to the west radio lobe (cavity A) and to the east radio lobe (cavity B). The cavity power and age of the system are Pcav_{\text{cav}} \sim 9 ×\times1042^{42} erg s1^{-1} and tage_{\text{age}} \sim5.2 Myr, respectively. Evaluating the position of A1668 in the cooling luminosity-cavity power parameter space, we find that the AGN energy injection is currently consistent within the scatter of the relationship, suggesting that offset cooling is likely not breaking the AGN feedback cycle.

Keywords

Cite

@article{arxiv.2102.11299,
  title  = {A first Chandra view of the cool core cluster A1668: offset cooling and AGN feedback cycle},
  author = {Thomas Pasini and Myriam Gitti and Fabrizio Brighenti and Ewan O'Sullivan and Fabio Gastaldello and Pasquale Temi and Stephen Hamer},
  journal= {arXiv preprint arXiv:2102.11299},
  year   = {2021}
}

Comments

16 pages, 14 figures