Hadronic models of blazar emission constitute an interesting alternative to the more popular leptonic ones. Using the BL Lac object Mrk 421 as a characteristic example, we present two distinct ways of modeling the spectral energy distribution of blazars in the hadronic context, and we discuss the predictions of each variant on the spectral shape, the multi-wavelength variability, the cosmic-ray flux, and the high-energy neutrino emission. Focusing on the latter, we then present an application of the hadronic model to individual BL Lacs that were recently suggested to be the counterparts of some of the IceCube neutrinos
We describe new implementations of leptonic and hadronic models for the broadband emission from rela...
We consider internal shocks as the main dissipation mechanism responsible for the emission in blazar...
Context. High-energy emission from blazars is produced by electrons that are either accelerated dire...
Hadronic models of blazar emission constitute an interesting alternative to the more popular leptoni...
International audienceContext. The wealth of recent data from Imaging Air Cherenkov telescopes (IACT...
Context. The wealth of recent data from Imaging Air Cherenkov telescopes (IACTs), ultra-high energy ...
We calculate the spectral energy distribution (SED) of electromagnetic radiation and the spectrum of...
The recently reported coincidences between high‐energy neutrino events and major blazar outbursts re...
We calculate the spectral energy distribution (SED) of electromagnetic radiation and the spectrum of...
Abstract. The characteristic double-bumped spectral energy distribution (SED) of blazars is explaine...
International audienceWhile blazars have long been one of the candidates in the search for the origi...
We describe new implementations of leptonic and hadronic models for the broadband emission from rela...
We discuss on the modelling of blazar jets as emitters of multiwavelength radiation with the impleme...
Aims. We study the production of very-high-energy emission in blazars as a superposition of a steady...
Five years after the discovery of the diffuse astrophysical neutrino flux, its origin is still uncle...
We describe new implementations of leptonic and hadronic models for the broadband emission from rela...
We consider internal shocks as the main dissipation mechanism responsible for the emission in blazar...
Context. High-energy emission from blazars is produced by electrons that are either accelerated dire...
Hadronic models of blazar emission constitute an interesting alternative to the more popular leptoni...
International audienceContext. The wealth of recent data from Imaging Air Cherenkov telescopes (IACT...
Context. The wealth of recent data from Imaging Air Cherenkov telescopes (IACTs), ultra-high energy ...
We calculate the spectral energy distribution (SED) of electromagnetic radiation and the spectrum of...
The recently reported coincidences between high‐energy neutrino events and major blazar outbursts re...
We calculate the spectral energy distribution (SED) of electromagnetic radiation and the spectrum of...
Abstract. The characteristic double-bumped spectral energy distribution (SED) of blazars is explaine...
International audienceWhile blazars have long been one of the candidates in the search for the origi...
We describe new implementations of leptonic and hadronic models for the broadband emission from rela...
We discuss on the modelling of blazar jets as emitters of multiwavelength radiation with the impleme...
Aims. We study the production of very-high-energy emission in blazars as a superposition of a steady...
Five years after the discovery of the diffuse astrophysical neutrino flux, its origin is still uncle...
We describe new implementations of leptonic and hadronic models for the broadband emission from rela...
We consider internal shocks as the main dissipation mechanism responsible for the emission in blazar...
Context. High-energy emission from blazars is produced by electrons that are either accelerated dire...