Probing the low-energy particle content of blazar jets through MeV observations
arXiv:2412.09089 · doi:10.1051/0004-6361/202453411
Abstract
Many of the blazars observed by Fermi actually have the peak of their time-averaged gamma-ray emission outside the GeV Fermi energy range, at MeV energies. The detailed shape of the emission spectrum around the MeV peak places important constraints on acceleration and radiation mechanisms in the blazar jet and may not be the simple broken power law obtained by extrapolating from the observed X-ray and GeV gamma-ray spectra. In particular, state-of-the-art simulations of particle acceleration by shocks show that a significant fraction (possibly up to ) of the available energy may go into bulk, quasi-thermal heating of the plasma crossing the shock rather than producing a non-thermal power law tail. Other ``gentler" but possibly more pervasive acceleration mechanisms such as shear acceleration at the jet boundary may result in a further build-up of the low-energy () electron/positron population in the jet. As already discussed for the case of gamma-ray bursts, the presence of a low-energy, Maxwellian-like ``bump'' in the jet particle energy distribution can strongly affect the spectrum of the emitted radiation, e.g., producing an excess over the emission expected from a power-law extrapolation of a blazar's GeV-TeV spectrum. We explore the potential detectability of the spectral component ascribable to a hot, quasi-thermal population of electrons in the high-energy emission of flat-spectrum radio quasars (FSRQ). We show that for typical FSRQ physical parameters, the expected spectral signature is located at MeV energies. For the brightest Fermi FSRQ sources, the presence of such a component will be constrained by the upcoming MeV Compton Spectrometer and Imager (COSI) satellite.
5 pages, 2 figures, accepted for publication in A&A Letters
References in corpus (12)
- Particle acceleration in relativistic collisionless shocks: Fermi process at last?
- The power of blazar jets
- Relativistic Jets Shine through Shocks or Magnetic Reconnection?
- The blazar sequence: a new perspective
- Polarized Blazar X-rays imply particle acceleration in shocks
- The spectrum of the Broad Line Region and the high-energy emission of powerful blazars
- Probing Acceleration and Turbulence at Relativistic Shocks in Blazar Jets
- Electron-proton co-acceleration on relativistic shocks in extreme-TeV blazars
- Long-term Evolution of Relativistic Unmagnetized Collisionless Shocks
- BASS XXXIII: Swift-BAT blazars and their jets through cosmic time
- Electron and proton energization in 3D reconnecting current sheets in semirelativistic plasma with guide magnetic field
- Multifrequency polarimetry of High-Synchrotron Peaked blazars probes the shape of their jets