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Fast Optical Variability of the TeV Blazar PKS 1725+123 Observed by SVOM-VT and Insights from Multiwavelength Follow-up Observations

  • Shuo Yu Liu
  • , Yu Wei Yu
  • , Ji Shun Lian
  • , Xin Ke Hu
  • , Alexis Coleiro
  • , Zhu Heng Yao
  • , Li Ping Xin
  • , Jing Wang
  • , Hua Li Li
  • , Zi Qi Wang
  • , Jin Zhang*
  • , Floriane Cangemi
  • , Bertrand Cordier
  • , Antoine Foisseau
  • , Olivier Godet
  • , Andrea Goldwurm
  • , Diego Götz
  • , Sébastien Guillot
  • , Xu Hui Han
  • , Ning Jiang
  • Cyril Lachaud, Sébastien Le Stum, En Wei Liang, Pierre Maggi, Yu Lei Qiu, Jérôme Rodriguez, Lian Tao, Jian Yan Wei, Chao Wu, Liang Zhang, Shuang Nan Zhang, Shi Jie Zheng
*Corresponding author for this work
  • Beijing Institute of Technology
  • CNRS/IN2P3
  • CAS - National Astronomical Observatories
  • Guangxi University
  • CEA Saclay (Commissariat à l’Energie Atomique et aux Energies Alternatives)
  • Aix-Marseille Université and CNRS/IN2P3
  • Institut de Recherche en Astrophysique et Planétologie (IRAP)
  • University of Science and Technology of China
  • Observatoire Astronomique de Strasbourg
  • Université Paris-Saclay
  • CAS - Institute of High Energy Physics
  • University of Chinese Academy of Sciences

Research output: Contribution to journalArticlepeer-review

Abstract

PKS 1725+123 is a flat-spectrum radio quasar (FSRQ) with a redshift of z = 0.586. The detection of this object in the TeV band was reported by the MAGIC telescopes and High Energy Stereoscopic System in 2025 August. Subsequently, we promptly initiated target-of-opportunity observations using the Space-based multi-band astronomical Variable Objects Monitor (SVOM) satellite. By analyzing the observational optical data from the SVOM Visible Telescope and comprehensively examining the Fermi-LAT and Swift-XRT observational data, it was found that the source is in a high-flux state across the optical, X-ray, and GeV γ-ray bands around the time of the TeV detections. Its optical flux reaches a historically unprecedented high level and shows significant variability on timescale as short as minutes. The variability is accompanied by changes in the color index, exhibiting a bluer-when-brighter behavior during the high-flux state. Based on the simultaneous multiwavelength data, we construct the broadband spectral energy distribution (SED) of the source in the high-flux state. PKS 1725+123 demonstrates a remarkably high synchrotron peak frequency, which is distinctly different from that of other FSRQs. We propose a two-zone spine–sheath jet model to reproduce this SED. The optical–X-ray emission is generated by the synchrotron process of the relativistic electrons within a compact zone. The inverse Compton (IC) scattering processes of the same electron population contribute to the low-energy end of the Fermi-LAT spectrum, while the high-energy end of the Fermi-LAT spectrum is ascribed to the IC scattering of the synchrotron photons within the compact zone by the higher-energy electrons in an extended region.

Original languageEnglish
Article numberL72
JournalAstrophysical Journal Letters
Volume1005
Issue number2
DOIs
Publication statusPublished - 10 Jul 2026
Externally publishedYes

Keywords

  • Blazars (164)
  • Flat-spectrum radio quasars (2163)
  • Gamma-ray sources (633)
  • Non-thermal radiation sources (1119)
  • Relativistic jets (1390)

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