Multiwavelength spectral modelling of the candidate neutrino blazar PKS 0735+178

Author:

Bharathan Athira M1ORCID,Stalin C S2ORCID,Sahayanathan S34,Bhattacharyya Subir34ORCID,Mathew Blesson1ORCID

Affiliation:

1. Department of Physics and Electronics, CHRIST (Deemed to be University) , Bangalore , India , 560029

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

3. Astrophysical Sciences Division, Bhabha Atomic Research Centre , Mumbai 400085 , India

4. Homi Bhabha National Institute , Mumbai 400094 , India

Abstract

ABSTRACT The BL Lac object PKS 0735+178 was in its historic γ-ray brightness state during 2021 December. This period also coincides with the detection of a neutrino event IC 211208A, which was localized close to the vicinity of PKS 0735+178. We carried out detailed γ-ray timing and spectral analysis of the source in three epochs: (a) quiescent state (E1), (b) moderate-activity state (E2), and (c) high-activity state (E3) coincident with the epoch of neutrino detection. During the epoch of neutrino detection (E3), we found the largest variability amplitude of 95 per cent. The γ-ray spectra corresponding to these three epochs are well fit by the power-law model and the source is found to show spectral variations with a softer when brighter trend. In epoch E3, we found the shortest flux doubling/halving time of 5.75 h. Even though the spectral energy distribution in the moderate-activity state and in the high-activity state could be modelled by the one-zone leptonic emission model, the spectral energy distribution in the quiescent state required an additional component of radiation over and above the leptonic component. Here, we show that a photomeson process was needed to explain the excess γ-ray emission in the hundreds of GeV that could not be accounted for by the synchrotron self-Compton process.

Funder

Department of Science and Technology

Publisher

Oxford University Press (OUP)

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