The prototype X-ray binary GX 339–4: using TeV γ-rays to assess LMXBs as Galactic cosmic ray accelerators

Author:

Kantzas D12ORCID,Markoff S12ORCID,Lucchini M13ORCID,Ceccobello C4,Grinberg V56,Connors R M T7ORCID,Uttley P1

Affiliation:

1. Anton Pannekoek Institute for Astronomy (API), University of Amsterdam , Science Park 904, NL-1098 XH Amsterdam, the Netherlands

2. GRavitational AstroParticle Physics Amsterdam (GRAPPA), University of Amsterdam , Science Park 904, NL-1098 XH Amsterdam, the Netherlands

3. MIT Kavli Institute for Astrophysics and Space Research, Massachusetts Institute of Technology , Cambridge, MA 02139, USA

4. Department of Space, Earth and Environment, Chalmers University of Technology , Onsala Space Observatory, SE-439 92 Onsala, Sweden

5. Institute for Astronomy und Astrophysics, University of Tübingen , Sand 1, D-72076 Tübingen, Germany

6. European Space Agency (ESA), European Space Research and Technology Centre (ESTEC) , Keplerlaan 1, NL-2201 AZ Noordwijk, the Netherlands

7. Cahill Center for Astronomy and Astrophysics, California Institute of Technology , 1200 California Boulevard, Pasadena, CA 91125, USA

Abstract

ABSTRACT Since the discovery of cosmic rays (CRs) over a century ago, their origin remains an open question. Galactic CRs with energy up to the knee (1015 eV) are considered to originate from supernova remnants, but this scenario has recently been questioned due to lack of TeV γ-ray counterparts in many cases. Extragalactic CRs, on the other hand, are thought to be associated with accelerated particles in the relativistic jets launched by supermassive accreting black holes at the centre of galaxies. Scaled down versions of such jets have been detected in X-ray binaries hosting a stellar black hole (BHXBs). In this work, we investigate the possibility that the smaller scale jets in transient outbursts of low-mass BHXBs could be sources of Galactic CRs. To better test this scenario, we model the entire electromagnetic spectrum of such sources focusing on the potential TeV regime, using the ‘canonical’ low-mass BHXB GX 339–4 as a benchmark. Taking into account both the leptonic radiative processes and the γ-rays produced via neutral pion decay from inelastic hadronic interactions, we predict the GeV and TeV γ-ray spectrum of GX 339–4 using lower frequency emission as constraints. Based on this test-case of GX 339–4, we investigate whether other, nearby low-mass BHXBs could be detected by the next-generation very-high-energy γ-ray facility the Cherenkov Telescope Array, which would establish them as additional and numerous potential sources of CRs in the Galaxy.

Funder

Dutch Research Council

Swedish Research Council

NASA

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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