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Very High Energy Gamma-Rays from AGN: Cascading on the Cosmic Background Radiation Fields and the Formation of Pair Halos

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arxiv astro-ph/9312045 v1 pith:G6ERJULD submitted 1993-12-18 astro-ph

Very High Energy Gamma-Rays from AGN: Cascading on the Cosmic Background Radiation Fields and the Formation of Pair Halos

classification astro-ph
keywords energypairemissionradiationgamma-rayshalohaloshigh
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Recent high energy gamma-ray observations (E>100 MeV) of blazar AGN show emission spectra with no clear upper energy cutoff. AGN, considered to be possible sources for the highest energy cosmic rays, may have emission extending well into the VHE (very high energy, E>100 GeV) domain. Because VHE gamma-rays are absorbed by pair production on the intergalactic background radiation, much of this emission is not visible. Electromagnetic cascades initiated by absorbed VHE gamma-rays, however, may be observable. Since the velocities of e+e- pairs produced in a cascade are likely to be isotropized by an ambient random magnetic field, extended ``halos'' (R>1 Mpc) of pairs will be formed around AGN with VHE emission. Cascade radiation from these pair halos is emitted isotropically and is observable below a few TeV. The halo radiation can be distinguished by its characteristic variation in spectrum and intensity with angular distance from the central source. This variation depends weakly on the details of the central source model, e.g., the orientation and beaming/opening angle of an emitting jet. Limiting or determining the intensity of the pair halo can thus serve as a model-independent bound on or measure of the VHE power of AGN. Next-generation Cherenkov telescopes may be able to image a pair halo.

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Cited by 2 Pith papers

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  1. Constraining cosmological parameters from very-high-energy $\gamma$-ray attenuation in blazar spectra: Bayesian inference and systematic uncertainties

    astro-ph.HE 2026-07 conditional novelty 6.0

    Gamma-ray attenuation in 241 blazar spectra constrains the combined opacity/Hubble ratio r=1.723^{+0.096}_{-0.095}, giving H0=58.3^{+3.4}_{-3.0} km/s/Mpc (fixed EBL) or 60.5^{+10.8}_{-10.0} with an 18% EBL-scale uncertainty.

  2. A New Measurement of the Extragalactic Background Light using 15\,yr of {\it Fermi}-Large Area Telescope Data

    astro-ph.HE 2026-04 unverdicted novelty 4.0

    High-significance measurement of EBL optical depth in 19 redshift bins from Fermi-LAT blazar spectra, consistent with existing models.