Fermi-Large Area Telescope Detection of Very High Energy (>100 GeV) Emission from Compton-Dominated Blazars
P N Naseef Mohammed, Vaidehi S. Paliya, C D Ravikumar
astro-ph.HE
Submitted: 2026-07-11
License: http://creativecommons.org/licenses/by-nc-nd/4.0/
The gist: The observation of broad emission lines in the optical spectra of flat-spectrum radio quasars (FSRQs) suggests radiatively efficient accretion powering these objects.
Terminology
Abstract
The observation of broad emission lines in the optical spectra of flat-spectrum radio quasars (FSRQs) suggests radiatively efficient accretion powering these objects. In such broad emission line blazars, the intense broad-line region (BLR) radiation can provide seed photons for inverse Compton scattering, leading to a Compton-dominated spectral energy distribution. Interestingly, the same BLR photon field can also absorb very high-energy (VHE; E>100 GeV) gamma-ray radiation, thus explaining the paucity of VHE-detected FSRQs. Here we report the results of a systematic search to identify VHE-emitting sources in a sample of 626 Compton-dominated blazars (Compton dominance > 1), using about 17.5 years of Fermi-Large Area Telescope observations. We identified 14 blazars at greater than 4 sigma confidence level, including 4 sources detected in the VHE band at high significance (> 5 sigma) for the first time. We also found 21 objects from which at least one VHE photon was detected, thus substantially expanding the known VHE FSRQ population. Investigating the temporal coincidence of the VHE photons with the gamma-ray activity, we noticed the VHE emission to be detected during flaring as well as low jet activity epochs. By estimating the optical depth for the gamma gamma absorption due to the BLR photon field, we constrained the VHE-emitting region to be located outside BLR (>1.1-1.4 times BLR radius). We conclude that multi-wavelength followup observations of these enigmatic VHE-detected broad line blazars will permit us to constrain the radiative processes responsible for the GeV-TeV emission, and will set the benchmark for their observations with the upcoming Cherenkov Telescope Array Observatory.
Sources
- The Spectral Energy Distribution of Fermi bright blazars
- The Fermi-LAT Light Curve Repository
- Gamma rays from the quasar PKS 1441+25: story of an escape
- Development of the Model of Galactic Interstellar Emission for Standard Point-Source Analysis of Fermi Large Area Telescope Data
- Detection of very high energy gamma-ray emission from the gravitationally-lensed blazar QSO B0218+357 with the MAGIC telescopes
- Very-high-energy gamma-rays from the Universe's middle age: detection of the z=0.940 blazar PKS 1441+25 with MAGIC
- The Fourth Catalog of Active Galactic Nuclei Detected by the Fermi Large Area Telescope
- The Fourth Catalog of Active Galactic Nuclei Detected by the Fermi Large Area Telescope -- Data Release 3
- The major upgrade of the MAGIC telescopes, Part II: A performance study using observations of the Crab Nebula
- Search for Very-High-Energy Gamma Rays from the z = 0.896 Quasar 4C +55.17 with the MAGIC telescopes
- MAGIC discovery of VHE Emission from the FSRQ PKS 1222+21
- Fermi-LAT 16-year Source List
- Fermi Large Area Telescope Fourth Source Catalog Data Release 4 (4FGL-DR4)
- The extragalactic background light, the Hubble constant, and anomalies: conclusions from 20 years of TeV gamma-ray observations
- Relativistic Jets in Active Galactic Nuclei
- Gamma-Gamma Absorption in the Broad Line Region Radiation Fields of Gamma-Ray Blazars
- The NuSTAR view on Hard-TeV BL Lacs
- On the origin of gamma rays in Fermi blazars: beyond the broad line region
- The isotropic $\gamma$-ray emission above 100 GeV: where do very high energy $\gamma$ rays come from?
- Gamma-Ray Studies of Blazars: Synchro-Compton Analysis of Flat Spectrum Radio Quasars
Related papers
- Numerical Studies of Accretion Flows onto a Neutron Star Engulfed in a Massive Star
- Collisionless Accretion of Finite-Angular-Momentum Plasma onto a Spinning Black Hole
- Impact of Magnetic Field Topology on Electromagnetic and Gravitational Waves from Binary Neutron Star Merger Remnants
- XRISM Resolve Spectroscopy of GX 5-1: Constraints on Iron Spectral Features in a Luminous Neutron-Star Binary
- SN 1006: A Cosmic Laboratory for Investigating Shock Acceleration Physics
- Neutrino Spectral Pinching in 3D Core-Collapse Supernovae: Late-Time Convergence, Failed-Explosion Signatures, and Viewing-Angle Dispersion