Possible contribution of X-ray binary jets to the Galactic cosmic ray and neutrino flux

Author:

Kantzas D123ORCID,Markoff S23ORCID,Cooper A J24ORCID,Gaggero D5ORCID,Petropoulou M67ORCID,De La Torre Luque P8ORCID

Affiliation:

1. Laboratoire d’Annecy-le-Vieux de Physique Théorique (LAPTh), CNRS, USMB , 9 Chem. de Bellevue, F-74940 Annecy , France

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

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

4. Astrophysics, The University of Oxford , Keble Road , Oxford OX1 3RH, UK

5. INFN Sezione di Pisa , Polo Fibonacci, Largo B. Pontecorvo 3, 56127 Pisa, Italy

6. Department of Physics, National and Kapodistrian University of Athens , University Campus Zografos, GR 15783 , Athens, Greece

7. Institute of Accelerating Systems and Applications , University Campus Zografos , Grigoriou Kousidi 161, Athens, Greece

8. Stockholm University and The Oskar Klein Centre for Cosmoparticle Physics , Alba Nova, 10691 Stockholm , Sweden

Abstract

ABSTRACT For over a century, the identification of high-energy cosmic ray (CR) sources remains an open question. For Galactic CRs with energy up to 1015 eV, supernova remnants (SNRs) have traditionally been thought the main candidate source. However, recent TeV γ-ray observations have questioned the SNR paradigm. Propagating CRs are deflected by the Galactic magnetic field, hence, γ-rays and neutrinos produced via inelastic hadronic interactions are the only means for unveiling the CR sources. In this work, we study the γ-ray and neutrino emission produced by CRs accelerated inside Galactic jets of stellar-mass black holes in X-ray binaries (BHXBs). We calculate the intrinsic neutrino emission of two prototypical BHXBs , Cygnus X–1 and GX 339–4, for which we have high-quality, quasi-simultaneous multiwavelength spectra. Based on these prototypical sources, we discuss the likelihood of the 35 known Galactic BHXBs to be efficient CR accelerators. Moreover, we estimate the potential contribution to the CR spectrum of a viable population of BHXBs that reside in the Galactic plane. When these BHXBs go into outburst, they may accelerate particles up to hundreds of TeV that contribute to the diffuse γ-ray and neutrino spectra while propagating in the Galactic medium. Using HERMES, an open-source code that calculates the hadronic processes along the line of sight, we discuss the contribution of BHXBs to the diffuse γ-ray and neutrino fluxes, and compare these to their intrinsic γ-ray and neutrino emissions. Finally, we discuss the contribution of BHXBs to the observed spectrum of Galactic CRs.

Funder

Dutch Research Council

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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