A MeerKAT-meets-LOFAR study of Abell 1413: a moderately disturbed non-cool-core cluster hosting a ~500 kpc ‘mini’-halo

Author:

Riseley C J123ORCID,Biava N12ORCID,Lusetti G4ORCID,Bonafede A12ORCID,Bonnassieux E256ORCID,Botteon A2ORCID,Loi F7ORCID,Brunetti G2ORCID,Cassano R2ORCID,Osinga E8ORCID,Rajpurohit K129ORCID,Röttgering H J A8ORCID,Shimwell T8,Timmerman R8ORCID,van Weeren R J8ORCID

Affiliation:

1. Dipartimento di Fisica e Astronomia, Università degli Studi di Bologna , via P. Gobetti 93/2, I-40129 Bologna , Italy

2. INAF – Istituto di Radioastronomia , via P. Gobetti 101, I-40129 Bologna , Italy

3. CSIRO Space and Astronomy , PO Box 1130, Bentley, WA 6102 , Australia

4. Hamburger Sternwarte, Universität Hamburg , Gojenbergsweg 112, D-21029 Hamburg , Germany

5. Julius-Maximilians-Universität Würzburg, Fakultät für Physik und Astronomie, Institut für Theoretische Physik und Astrophysik , Lehrstuhl für Astronomie, Emil-Fischer-Str. 31, D-97074 Würzburg , Germany

6. Observatoire de Paris , 5 place Jules Janssen, F-92195 Meudon , France

7. INAF – Osservatorio Astronomico di Cagliari , Via della Scienza 5, I-09047 Selargius, CA , Italy

8. Leiden Observatory, Leiden University , PO Box 9513, NL-2300 RA Leiden , the Netherlands

9. Harvard-Smithsonian Center for Astrophysics , 60 Garden Street, Cambridge, MA 02138 , USA

Abstract

ABSTRACT Many relaxed cool-core clusters host diffuse radio emission on scales of hundreds of kiloparsecs: mini-haloes. However, the mechanism responsible for generating them, as well as their connection with central active galactic nuclei, is elusive and many questions related to their physical properties and origins remain unanswered. This paper presents new radio observations of the galaxy cluster Abell 1413 performed with MeerKAT (L-band; 872 to 1712 MHz) and LOFAR HBA (120 to 168 MHz) as part of a statistical and homogeneous census of mini-haloes. Abell 1413 is unique among mini-halo clusters as it is a moderately disturbed non-cool-core cluster. Our study reveals an asymmetric mini-halo up to 584 kpc in size at 1283 MHz, twice as large as first reported at similar frequencies. The spectral index is flatter than previously reported, with an integrated value of α = −1.01 ± 0.06, shows significant spatial variation, and a tentative radial steepening. We studied the point-to-point X-ray/radio surface brightness correlation to investigate the thermal/non-thermal connection: our results show a strong connection between these components, with a superlinear slope of $b = 1.63^{+0.10}_{-0.10}$ at 1283 MHz and $b = 1.20^{+0.13}_{-0.11}$ at 145 MHz. We also explore the X-ray surface brightness/radio spectral index correlation, finding a slope of $b = 0.59^{+0.11}_{-0.11}$. Both investigations support the evidence of spectral steepening. Finally, in the context of understanding the particle acceleration mechanism, we present a simple theoretical model which demonstrates that hybrid scenarios – secondary electrons (re-)accelerated by turbulence – reproduce a superlinear correlation slope.

Funder

ERC

DFG

MIUR

NWO

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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