The role of supernovae inside AGN jets in UHECR acceleration
arXiv:2309.02239 · doi:10.1051/0004-6361/202347554
Abstract
Jets of active galactic nuclei are potential accelerators of ultra high-energy cosmic rays. Supernovae can occur inside these jets and contribute to cosmic ray acceleration, particularly of heavy nuclei, but that contribution has been hardly investigated so far. We carried out a first dedicated exploration of the role of supernovae inside extragalactic jets in the production of ultra high-energy cosmic rays. We characterized the energy budget of supernova-jet interactions, and the maximum possible energies of the particles accelerated in those events, likely dominated by heavy nuclei. This allowed us to assess whether these interactions can be potential acceleration sites of ultra high-energy cosmic rays, or at least of their seeds. For that, we estimated the cosmic ray luminosity for different galaxy types, and compared the injection rate of cosmic ray seeds into the jet with that due to galactic cosmic ray entrainment. Since the supernova is fueled for a long time by the luminosity of the jet, the energy of a supernova-jet interaction can be several orders of magnitude greater than that of an isolated supernova. Thus, despite the low rate of supernovae expected to occur in the jet, they could still provide more seeds for accelerating ultra high-energy particles than cosmic ray entrainment from the host galaxy. Moreover, these interactions can create sufficiently efficient accelerators to be a source of cosmic rays with energies ~EeV. Supernova-jet interactions can contribute significantly to the production of ultra high-energy cosmic rays, either directly by accelerating these particles themselves or indirectly by providing pre-accelerated seeds.
4 pages, Letter accepted for publication in Astronomy and Astrophysics (in press)
References in corpus (27)
- The Black Hole Mass, Stellar M/L, and Dark Halo in M87
- Energy spectra of gamma-rays, electrons and neutrinos produced at interactions of relativistic protons with low energy radiation
- Revisiting the Fanaroff-Riley dichotomy and radio-galaxy morphology with the LOFAR Two-Metre Sky Survey (LoTSS)
- Ionized outflows from active galactic nuclei as the essential elements of feedback
- Type Ia Supernova Explosions in Binary Systems: A Review
- Gamma-ray flares from red giant/jet interactions in AGN
- On the deceleration of FRI jets: mass loading by stellar-winds
- Constraining the sources of ultra-high-energy cosmic rays across and above the ankle with the spectrum and composition data measured at the Pierre Auger Observatory
- Internal entrainment and the origin of jet-related broad-band emission in Centaurus A
- AGN Jet Mass Loading and Truncation by Stellar Winds
- Energetics and Birth Rates of Supernova Remnants in the Large Magellanic Cloud
- PeV photon and neutrino flares from galactic gamma-ray binaries
- The impact of red giant/AGB winds on AGN jet propagation
- Supernovae and their host galaxies - V. The vertical distribution of supernovae in disc galaxies
- Active Galactic Nuclei as potential Sources of Ultra-High Energy Cosmic Rays
- Magneto-hydrodynamic simulations of young supernova remnants and their energy-conversion phase
- Gamma rays from red giant wind bubbles entering the jets of elliptical host blazars
- Offsets between X-ray and Radio Components in X-ray Jets: The AtlasX
- Prospects for ultra-high-energy particle acceleration at relativistic shocks
- Physical Properties of the Supernova Remnant Population in the Small Magellanic Cloud
- Extreme ion acceleration at extragalactic jet termination shocks
- 2022 report from the Auger-TA working group on UHECR arrival directions
- UHECR Echoes from the Council of Giants
- Local Environments of Low-Redshift Supernovae
- Ultra high energy cosmic rays from past activity of Andromeda galaxy
- Non-thermal emission resulting from a supernova explosion inside an extragalactic jet
- Spatial variations of magnetic field along active galactic nuclei jets on sub-pc to Mpc scales