AT2020ohl: its nature and probable implications

Author:

Roy Rupak1ORCID,Mandal Samir2,Sahu D K3,Anupama G C3ORCID,Nandi Sumana1ORCID,Kumar Brijesh4

Affiliation:

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

2. Indian Institute of Space Science & Technology , Trivandrum 695547, Kerala , India

3. Indian Institute of Astrophysics , II Block Koramangala, Bangalore 560034 , India

4. Aryabhatta Research Institute of Observational Sciences , Manora Peak, Nainital 263001, Uttarakhand , India

Abstract

ABSTRACT ASASSN-20hx, a.k.a AT2020ohl, is an ambiguous nuclear transient, which was discovered in the nearby galaxy NGC6297 by the All-Sky Automated Survey for Supernovae. We have investigated the evolution of AT2020ohl using a multiwavelength data set to explain the geometry of the system and the energy radiated by it between X-ray and radio wavelengths. Our X-ray, UV/optical, and radio observations of the object jointly clarify the association of AT2020ohl with the nuclear activity of NGC6297. We detected radio counterpart of AT2020ohl 111 and 313 d after the discovery in Jansky Very Large Array X-band with flux densities 47 ± 14 and 34 ± 3 $\mu$Jy, respectively. Using multiwavelength data analysis, we nullify the possibility of associating any stellar disruption process with this event. We found some evidence showing that the host galaxy is a merger remnant, so the possibility of a binary supermassive black hole (SMBH) system cannot be ruled out. The central SMBH has a mass of ∼1.2 × 107 M⊙. We propose the accretion disc activity as the origin of AT2020ohl – it is either due to disc accretion event on to the central SMBH or due to the sudden accretion activity in a pre-existing accretion disc of the system during the interaction of two SMBHs which became gravitationally bound during a merger process. However, we also admit that with the existing data set, it is impossible to say definitively, among these two probabilities, which one is the origin of this nuclear transient.

Funder

SERB

Publisher

Oxford University Press (OUP)

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