Pair Cascades at the Edge of the Broad-Line Region Shaping the Gamma-Ray Spectrum of 3C 279
arXiv:2108.01028 · doi:10.3847/1538-4357/ac0a6e
Abstract
The blazar 3C 279 emits a flux of gamma-rays that is variable on timescales as short as the light-crossing time across the event horizon of its central black hole. It is commonly reported that the spectral energy distribution (SED) does not show signs of pair attenuation due to interactions of the gamma rays with ambient ultraviolet photons, concluding that the gamma rays must originate from substructures in the jet outside of the broad-line region (BLR). We address the spectral signature imprinted by atomic emission lines on the gamma-ray spectrum produced by an inverse-Compton pair cascade in the photon field of the BLR. We determine with high precision the gamma-ray SED of 3C 279 using Fermi Large Area Telescope data from MJD 58129 - 58150 and simulate the pair cascade spectrum for three different injection terms. Satisfactory fits to the observational data are obtained. The obtained SED shows features imprinted by pair production on atomic emission line photons due to optically thick radiation transport, but lacking further exponential attenuation expected if the emission region would lie buried deep within the BLR. The SED of 3C 279 is consistent with an inverse-Compton pair cascade spectrum without exponential external pair absorption. Our findings support the view that the gamma-ray emission in 3C 279 originates from the edge of the BLR.
Accepted for publication in the Astrophysical Journal on 09.06.2021. Article comprises 9 pages, 2 tables and 5 figures. Comments are welcome!
References in corpus (22)
- Very-High-Energy Gamma Rays from a Distant Quasar: How Transparent Is the Universe?
- The blazar sequence: a new perspective
- GeV breaks in blazars as a result of gamma-ray absorption within the broad-line region
- Rapid Variability of Blazar 3C 279 during Flaring States in 2013-2014 with Joint Fermi-LAT, NuSTAR, Swift, and Ground-Based Multi-wavelength Observations
- The role of kink instability in Poynting-flux dominated jets
- Fermi acceleration in astrophysical jets
- The spectrum of the Broad Line Region and the high-energy emission of powerful blazars
- Particle acceleration in astrophysical jets
- Probing Acceleration and Turbulence at Relativistic Shocks in Blazar Jets
- The redshift-dependence of gamma-ray absorption in the environments of strong-line AGN
- Intrinsic absorption in 3C 279 at GeV-TeV energies and consequences for estimates of the EBL
- Constraints on the emission region of 3C 279 during strong flares in 2014 and 2015 through VHE gamma-ray observations with H.E.S.S
- On the Scatter in the Radius - Luminosity Relationship for Active Galactic Nuclei
- The physical properties of -4LAC flat spectrum radio quasars
- Gamma-ray opacity of the anisotropic stratified broad-line regions in blazars
- The mystery of spectral breaks: Lyman continuum absorption by photon-photon pair production in the Fermi GeV spectra of bright blazars
- Locating the gamma-ray emission region in the brightest Fermi-LAT Flat Spectrum Radio Quasars
- Two-dimensional Particle-in-Cell simulations of axisymmetric black hole magnetospheres
- Electron-beam interaction with emission-line clouds in blazars
- The observability of plasmoid-powered -ray flares with the Fermi Large Area Telescope
- Location of gamma-ray flaring region in quasar 4C +21.35
- Absorption effects in the blazar's gamma-ray spectra due to luminous stars crossing the jet
Cited by in corpus (3)
- Modelling the persistent low-state -ray emission of the PKS 1510-089 blazar with electromagnetic cascades initiated in hadronuclear interactions
- Constraints on VHE gamma-ray emission of Flat Spectrum Radio Quasars with the MAGIC telescopes
- Dips in the sub-TeV gamma-ray light curves from central parts of galaxies due to transiting luminous stars