English

From Equipartition to Curvature: The Spectral Evolution of 4FGL Blazars

High Energy Astrophysical Phenomena 2025-09-04 v2 Astrophysics of Galaxies

Abstract

We investigate the evolution of spectral energy distribution (SED) and underlying electron energy distribution (EED) by modeling the nearly simultaneous broadband spectra of selected bright 4FGL blazars, in the context of a combined cooling and stochastic acceleration scenario. We find that one-zone leptonic model with log-parabolic (LP) EED can successfully fit the GeV-TeV emission of blazars. The synchrotron frequency νs\nu_s of blazars mainly evolves due to variation of electron peak energy γ3p\gamma_{3p}. The BL Lac objects (BL Lacs) show a negative trend in the νsνsLs\nu_s- \nu_s L_s SED plane, known as blazar sequence, that does not seem to be an artifact of Doppler boosting, but driven by the equipartition constraints. A positive correlation is found between the derived magnetic field BB and electron density nen_e, whereas nen_e and γ3p\gamma_{3p} negatively relate, as expected in an equipartition scenario. The flat spectrum radio quasars (FSRQs) deviate significantly from such a scenario, indicating their jet parameters should be varying independently. The synchrotron peak frequency νs\nu_s and its spectral curvature bsb_s negatively correlate for all blazars, confirming the stochastic particle acceleration in blazar jets. However, blazars do not show the signature of hard-sphere acceleration, indicating that magnetic turbulence in the jets might be soft and physical conditions might be near to steady state, consistent with equipartition. Furthermore, for BL Lacs, the SED curvature bsb_s and the EED curvature rr and nearly meet the theoretical relationship r=5bsr=5b_s, whereas the FSRQs show large deviation due to poor constrain on bsb_s due to presence of thermal component.

Keywords

Cite

@article{arxiv.2507.21647,
  title  = {From Equipartition to Curvature: The Spectral Evolution of 4FGL Blazars},
  author = {Muhammad S. Anjum and Shu-Jin Hou and Liang Chen and Zhigang Li and Minfeng Gu},
  journal= {arXiv preprint arXiv:2507.21647},
  year   = {2025}
}

Comments

Accepted for publication in ApJS