Mining mini-halos with MeerKAT I. Calibration and imaging

Author:

Trehaeven K S12,Parekh V1234ORCID,Oozeer N1235,Hugo B123,Smirnov O123,Bernardi G1236,Knowles K123ORCID,Tasse C1278,Asad K M B1239101112ORCID,Giacintucci S13ORCID

Affiliation:

1. Department of Physics and Electronics , , PO Box 94, Grahamstown 6140, South Africa

2. Rhodes University , , PO Box 94, Grahamstown 6140, South Africa

3. South African Radio Astronomy Observatory , 2 Fir Street, Black River Park, Observatory, Cape Town 7405, South Africa

4. National Radio Astronomy Observatory (NRAO) , 1003 Lopezville Rd, Socorro, NM 87801, USA

5. African Institute for Mathematical Sciences , 6 Melrose Road, Muizenberg 7945, South Africa

6. INAF – Istituto di Radioastronomia , Via Piero Gobetti 101, Bologna 40129, Italy

7. GEPI & USN, Observatoire de Paris, CNRS , , 5 Place Jules Janssen, Meudon 92190, France

8. Université Paris Diderot , , 5 Place Jules Janssen, Meudon 92190, France

9. ARGI, Department of Physical Sciences , , Bashundhara Residential Area, Dhaka, 1229, Bangladesh

10. Independent University, Bangladesh , , Bashundhara Residential Area, Dhaka, 1229, Bangladesh

11. Department of Physics and Astronomy , , Bellville, Cape Town 7535, South Africa

12. University of the Western Cape , , Bellville, Cape Town 7535, South Africa

13. Naval Research Laboratory , 4555 Overlook Avenue SW, Code 7213, Washington, DC 20375, USA

Abstract

ABSTRACT Radio mini-halos are clouds of diffuse, low-surface brightness synchrotron emission that surround the Brightest Cluster Galaxy (BCG) in massive cool-core galaxy clusters. In this paper, we use third generation calibration (3GC), also called direction-dependent (DD) calibration, and point source subtraction on MeerKAT extragalactic continuum data. We calibrate and image archival MeerKAT L-band observations of a sample of five galaxy clusters (ACO 1413, ACO 1795, ACO 3444, MACS J1115.8+0129, MACS J2140.2-2339). We use the CARACal pipeline for direction-independent (DI) calibration, DDFacet and killMS for 3GC, followed by visibility-plane point source subtraction to image the underlying mini-halo without bias from any embedded sources. Our 3GC process shows a drastic improvement in artefact removal, to the extent that the local noise around severely affected sources was halved and ultimately resulted in a 7 per cent improvement in global image noise. Thereafter, using these spectrally deconvolved Stokes I continuum images, we directly measure for four mini-halos the flux density, radio power, size, and in-band integrated spectra. Further to that, we show the in-band spectral index maps of the mini-halo (with point sources). We present a new mini-halo detection hosted by MACS J2140.2-2339, having flux density $S_{\rm 1.28\, GHz} = 2.61 \pm 0.31$ mJy, average diameter 296 kpc, and $\alpha ^{\rm 1.5\, GHz}_{\rm 1\, GHz} = 1.21 \pm 0.36$. We also found a ∼100 kpc southern extension to the ACO 3444 mini-halo which was not detected in previous VLA L-band observations. Our description of MeerKAT wide-field, wide-band data reduction will be instructive for conducting further mini-halo science.

Funder

National Research Foundation

Naval Research Laboratory

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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