English

Lobe-dominated gamma-ray Emission of Compact Symmetric Objects

High Energy Astrophysical Phenomena 2024-01-09 v1

Abstract

The γ\gamma-ray emitting compact symmetric objects (CSOs) PKS 1718--649, NGC 3894, and TXS 0128+554 are lobe-dominated in the radio emission. In order to investigate their γ\gamma-ray radiation properties, we analyze the \sim14-yr Fermi/LAT observation data of the three CSOs. They all show the low luminosity (1041104310^{41}-10^{43} erg s1^{-1}) and no significant variability in the γ\gamma-ray band. Their γ\gamma-ray average spectra can be well fitted by a power-law function. These properties of γ\gamma-rays are clearly different from the γ\gamma-ray emitting CSOs CTD 135 and PKS 1413+135, for which the γ\gamma-rays are produced by a restarted aligned jet. In the LγΓγL_{\gamma}-\Gamma_{\gamma} plane, the three CSOs are also located at the region occupied by radio galaxies (RGs) while CTD 135 and PKS 1413+135 display the similar feature to blazars. Together with the similar radio emission property to γ\gamma-ray emitting RGs Cen A and Fornax A, we speculate that the γ\gamma-rays of the three CSOs stem from their extended mini-lobes. The broadband spectral energy distributions of the three CSOs can be well explained by the two-zone leptonic model, where their γ\gamma-rays are produced by the inverse Compton process of the relativistic electrons in extended region. By extrapolating the observed Fermi/LAT spectra to the very high energy band, we find that TXS 0128+554 among the three CSOs may be detected by the Cherenkov Telescope Array in future.

Keywords

Cite

@article{arxiv.2401.03479,
  title  = {Lobe-dominated gamma-ray Emission of Compact Symmetric Objects},
  author = {Ying-Ying Gan and Hai-Ming Zhang and Xing Yang and Ying Gu and Jin Zhang},
  journal= {arXiv preprint arXiv:2401.03479},
  year   = {2024}
}

Comments

19 Pages, 5 Figures, 4 Tables, Accepted by RAA

R2 v1 2026-06-28T14:10:34.610Z