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On the Nature of MeV-blazars

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arxiv astro-ph/0205527 v1 pith:QEVIYOSW submitted 2002-05-30 astro-ph

classification astro-ph
keywords spectramev-blazarselectronsgamma-raygev-blazarscomptonizationcoolingdistances
verification ladder T0 review T1 audit T2 compute T3 formal
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Broad-band spectra of the FSRQ (flat-spectrum-radio quasars) detected in the high energy gamma-ray band imply that there may be two types of such objects: those with steep gamma-ray spectra, hereafter called MeV-blazars, and those with flat gamma-ray spectra, GeV-blazars. We demonstrate that this difference can be explained in the context of the ERC (external-radiation-Compton) model using the same electron injection function. A satisfactory unification is reachable, provided that: (a) spectra of GeV-blazars are produced by internal shocks formed at the distances where cooling of relativistic electrons in a jet is dominated by Comptonization of broad emission lines, whereas spectra of MeV-blazars are produced at the distances where cooling of relativistic electrons is dominated by Comptonization of near-IR radiation from hot dust; (b) electrons are accelerated via a two step process and their injection function takes the form of a double power-law, with the break corresponding to the threshold energy for the diffusive shock acceleration. Direct predictions of our model are that, on average, variability time scales of the MeV-blazars should be longer than variability time scales of the GeV-blazars, and that both types of the blazar phenomenon can appear in the same object.

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Cited by 2 Pith papers

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  1. A Rare Gamma-ray Flaring episode of the Narrow-Line Seyfert 1 Galaxy 1H 0323+342

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    Multi-wavelength monitoring of a gamma-ray flare in 1H 0323+342 reveals sub-hour variability, jet-corona transition, and ~10^46 erg/s jet power via external Compton modeling of disk and BLR photons.

  2. Supermassive black holes and their surroundings: MeV signatures

    astro-ph.HE 2025-07 unverdicted novelty 2.0 of 10

    A review of open questions in supermassive black hole physics that argues the MeV gamma-ray band is the critical missing observational window.

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