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GRB 240825A: Early Reverse Shock and Its Physical Implications

  • Chao Wu
  • , Yun Wang
  • , Hua Li Li
  • , Li Ping Xin
  • , Dong Xu
  • , Benjamin Schneider
  • , Antonio de Ugarte Postigo
  • , Gavin Lamb
  • , Andrea Reguitti
  • , Andrea Saccardi
  • , Xing Gao
  • , Xing Ling Li
  • , Qiu Li Wang
  • , Bing Zhang
  • , Jian Yan Wei
  • , Shuang Nan Zhang
  • , Frédéric Daigne
  • , Jean Luc Atteia
  • , Maria Grazia Bernardini
  • , Hong Bo Cai
  • Arnaud Claret, Bertrand Cordier, Jin Song Deng, Olivier Godet, Diego Götz, Xu Hui Han, Zhe Kang, Guang Wei Li, Zhen Wei Li, Cheng Zhi Liu, Xiao Meng Lu, You Lv, Julian P. Osborne, Jesse T. Palmerio, Yu Lei Qiu, Stéphane Schanne, Damien Turpin, Susanna Diana Vergani, Jing Wang, Yu Jie Xiao, Wen Jin Xie, Yang Xu, Zhu Heng Yao, Pin Pin Zhang, Ruo Son Zhang, Cheng Wei Zhu, Riccardo Brivio, Stefano Covino, Paolo D’Avanzo, Matteo Ferro, Andrea Melandri, Andrea Rossi, José Feliciano Agüí Fernández, Christina C. Thöne, Chun Hai Bai, Ali Esamdin, Abdusamatjan Iskandar, Shahidin Yaqup, Yu Zhang, Tu Hong Zhong, Shao Yu Fu, Shuai Qing Jiang, Xing Liu, Jie An, Zi Pei Zhu, Jia Xin Cao, En Wei Liang, Da Bin Lin, Xiang Gao Wang, Guo Wang Du, Xin Zhong Er, Yuan Fang, Xiao Wei Liu, Christophe Adami, Michel Dennefeld, Emeric Le Floc’h, Johan Peter Uldall Fynbo, Páll Jakobsson, Daniele Bjørn Malesani, Zhi Ping Jin, Jia Ren, Hao Wang, Da Ming Wei, Hao Zhou, Sergio Campana, Shiho Kobayashi, Massimiliano De Pasquale
  • National Astronomical Observatories-CAS
  • University of Chinese Academy of Sciences
  • Purple Mountain Observatory Chinese Academy of Sciences
  • LAM
  • Massachusetts Institute of Technology
  • Liverpool John Moores University
  • INAF
  • INAF Osservatorio Astronomico di Padova
  • CEA/UVSQ/CNRS
  • NAOC
  • Guangxi University
  • University of Science and Technology of China
  • University of Nevada Las Vegas
  • Institute of High Energy Physics, Chinese Academy of Sciences
  • Institut d’Astrophysique de Paris
  • IRAP/CNRS
  • Universite Paris-Saclay
  • Changchun Observatory
  • University of Leicester
  • Sorbonne Univ.
  • University of Insubria
  • Osservatorio Astronomico di Roma
  • INAF Istituto di Astrofisica Spaziale e Fisica Cosmica, Bologna
  • Centro Astronómico Hispano en Andalucia
  • E. Kharadze Georgian National Astrophysical Observatory
  • Yunnan University
  • CNRS
  • Niels Bohr Institutet
  • The Cosmic Dawn Centre (DAWN)
  • University of Iceland
  • Radboud University
  • University of Messina

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

Early multiwavelength observations offer crucial insights into the nature of the relativistic jets responsible for gamma-ray bursts and their interaction with the surrounding medium. We present data of GRB 240825A from 17 space- and ground-based telescopes/instruments, covering wavelengths from NIR/optical to X-ray and GeV, and spanning from the prompt emission to the afterglow phase triggered by Swift and Fermi. The early afterglow observations were carried out by SVOM/C-GFT, and spectroscopic observations of the afterglow by GTC, VLT, and TNG determined the redshift of the burst (z = 0.659) later. A comprehensive analysis of the prompt emission spectrum observed by Swift-BAT and Fermi-GBM/LAT reveals a rare and significant high-energy cutoff at 76 MeV. Assuming this cutoff is due to γγ absorption allows us to place an upper limit on the initial Lorentz factor, Γ0 < 245. The optical/NIR and GeV afterglow light curves can be described by the standard external shock model, with early-time emission dominated by a reverse shock (RS) and a subsequent transition to forward shock (FS) emission. Our afterglow modeling yields a consistent estimate of the initial Lorentz factor (Γ0 ∼ 234). Furthermore, the RS-to-FS magnetic field ratio ( R B ∼ 302 ) indicates that the RS region is significantly more magnetized than the FS region. An isotropic-equivalent kinetic energy of Ek,iso = 5.25 × 1054 erg is derived, and the corresponding γ-ray radiation efficiency is estimated to be ηγ = 3.1%. On the other hand, the standard afterglow model cannot reproduce the X-ray light curve of GRB 240825A, calling for improved models to characterize all multiwavelength data.

langue originaleAnglais
Numéro d'article105003
journalResearch in Astronomy and Astrophysics
Volume25
Numéro de publication10
Les DOIs
étatPublié - 1 oct. 2025
Modification externeOui

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