A New Enigmatic Radio Relic in the Low-mass Cluster Abell 2108

Author:

Chatterjee Swarna1ORCID,Rahaman Majidul2ORCID,Datta Abhirup1ORCID,Kale Ruta3ORCID,Paul Surajit4ORCID

Affiliation:

1. Department of Astronomy, Astrophysics and Space Engineering, Indian Institute of Technology Indore , Indore, MP 453552 , India

2. Institute of Astronomy, National Tsing Hua University , Hsinchu 300044 , Taiwan

3. National Centre for Radio Astrophysics (NCRA) , Tata Institute of Fundamental Research (TIFR), Pune 411007 , India

4. Manipal Centre for Natural Sciences, Centre of Excellence, Manipal Academy of Higher Education , Manipal, Karnataka 576104 , India

Abstract

ABSTRACT We report the discovery of a radio relic in the north-eastern periphery of the galaxy cluster Abell 2108 (A2108). A2108 is part of the uGMRT LOw-MAss Galaxy Cluster Survey (GLOMACS), where our main aim is to search for diffuse radio emission signatures in very sparsely explored low-mass galaxy clusters using uGMRT band-3 (central frequency 400 MHz). We used our uGMRT band-3 observations along with the existing archival band-3 uGMRT data to improve image sensitivity. Along with the previously reported south-western relic, the discovery of the new relic makes A2108 one of the few low-mass clusters hosting a double relic. The new relic spans over a region of 610 kpc × 310 kpc and, interestingly, differs considerably in size and morphology from the other relic. Using XMM–Newton science archive data, we also report the tentative detection of a mildly supersonic shock of Mach number $\mathcal {M}_\mathrm{SB}=1.42$ and $\mathcal {M}_\mathrm{T} = 1.43$ from the surface brightness and temperature discontinuities, respectively, near this newly found relic. Both the relics in A2108 are found to be significantly under-luminous compared with other double-relic systems in the mass–luminosity plane. Moreover, the north-eastern relic is remarkably under-luminous in the size–luminosity plane. Although mild supersonic shocks resulting from an off-axis merger could have influenced the origin of both relics, we hypothesize that local environments have played a crucial role in shaping their morphologies.

Funder

MOST

Department of Atomic Energy, Government of India

Publisher

Oxford University Press (OUP)

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