A multimessenger study of the blazar PKS 0735+178: a new major neutrino source candidate

Author:

Sahakyan N1234ORCID,Giommi P5678ORCID,Padovani P910ORCID,Petropoulou M1112ORCID,Bégué D13,Boccardi B14,Gasparyan S1

Affiliation:

1. ICRANet-Armenia , Marshall Baghramian Avenue 24a, Yerevan 0019, Armenia

2. ICRANet , Piazza della Repubblica, 10 65122 Pescara, Italy

3. ICRA, Dipartimento di Fisica , , Piazzale Aldo Moro, 500185 Rome, Italy

4. Sapienza Università di Roma , , Piazzale Aldo Moro, 500185 Rome, Italy

5. Center for Astro, Particle and Planetary Physics (CAP3) , , PO Box 129188 Abu Dhabi, United Arab Emirates

6. New York University Abu Dhabi , , PO Box 129188 Abu Dhabi, United Arab Emirates

7. Institute for Advanced Study, Technische Universität München , Lichtenbergstraße 2a85748 Garching bei München, Germany

8. Associated to Italian Space Agency, ASI , Via del Politecnico, 00133 Rome, Italy

9. European Southern Observatory , Karl-Schwarzschild-Straße 285748 Garching bei München, Germany

10. Associated to INAF - Osservatorio di Astrofisica e Scienza dello Spazio , Via Piero Gobetti, 93/340129 Bologna, Italy

11. Department of Physics , , GR-15783, Zografos, Athens, Greece

12. National and Kapodistrian University of Athens, University Campus Zografos , , GR-15783, Zografos, Athens, Greece

13. Bar Ilan University , Ramat Gan, 5290002, Israel

14. Max-Planck-Institut für Radioastronomie , Auf dem Hügel 69, 53121 Bonn, Germany

Abstract

ABSTRACT The blazar PKS 0735+178 is possibly associated with multiple neutrino events observed by the IceCube, Baikal, Baksan, and KM3NeT neutrino telescopes while it was flaring in the γ-ray, X-ray, ultraviolet, and optical bands. We present a detailed study of this peculiar blazar to investigate the temporal and spectral changes in the multiwavelength emission when the neutrino events were observed. The analysis of Swift-XRT snapshots reveal a flux variability of more than a factor 2 in about 5 × 103 s during the observation on 2021 December 17. In the γ-ray band, the source was in its historical highest flux level at the time of the arrival of the neutrinos. The observational comparison between PKS 0735+178 and other neutrino source candidates, such as TXS 0506+056, PKS 1424+240, and GB6 J1542+6129, shows that all these sources share similar spectral energy distributions, very high radio and γ-ray powers, and parsec scale jet properties. Moreover, we present strong supporting evidence for PKS 0735+178 to be, like all the others, a masquerading BL Lac. We perform comprehensive modelling of the multiwavelength emission from PKS 0735+178 within one-zone lepto-hadronic models considering both internal and external photon fields and estimate the expected accompanying neutrino flux. The most optimistic scenario invokes a jet with luminosity close to the Eddington value and the interactions of ∼ PeV protons with an external UV photon field. This scenario predicts ∼0.067 muon and anti-muon neutrinos over the observed 3-week flare. Our results are consistent with the detection of one very high-energy neutrino like IceCube-211208A.

Funder

ASI

European Research Council

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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