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Observation of inverse Compton emission from a long γ-ray burst

  • MAGIC Collaboration
  • University of Alabama in Huntsville
  • University of La Laguna
  • University of Udine
  • Kyoto University
  • National Institute for Astrophysics
  • Swiss Federal Institute of Technology Zurich
  • TU Dortmund University
  • University of Zagreb
  • Saha Institute of Nuclear Physics
  • Centro Brasileiro de Pesquisas Físicas
  • Complutense University
  • University of Łódź
  • University of Siena
  • German Electron Synchrotron
  • University of Padua
  • National Institute for Nuclear Physics
  • Max Planck Institute for Physics (Werner Heisenberg Institute)
  • Institute for High Energy Physics
  • University of Pisa
  • A. Alikhanian Yerevan Institute of Physics
  • CIEMAT
  • Port d’Informació Científica (PIC)
  • University of Rijeka
  • University of Würzburg
  • University of Turku
  • Institut d'Estudis Espacials de Catalunya
  • The University of Tokyo
  • National Academy of Sciences of the Republic of Armenia
  • University of Split
  • Josip Juraj Strossmayer University of Osijek
  • RIKEN
  • Tokai University
  • University of Trieste
  • Bulgarian Academy of Sciences
  • University of Barcelona
  • University of Oulu
  • Ruder Boskovic Institute
  • NASA Marshall Space Flight Center
  • Department of Space Science
  • Universities Space Research Association
  • Max Planck Institute for Extraterrestrial Physics
  • Kanazawa University
  • University of Maryland
  • NASA Goddard Space Flight Center
  • Stockholm University
  • KTH Royal Institute of Technology
  • Polytechnic University of Bari
  • University of Johannesburg
  • Open University of Israel
  • Kavli Institute for Particle Astrophysics and Cosmology
  • SLAC National Accelerator Laboratory
  • Université Montpellier 2
  • Osservatorio Astronomico di Brera
  • University College London
  • Pennsylvania State University
  • University of Maryland, College Park
  • University of Leicester
  • Istanbul University
  • Osservatorio Astronomico Roma
  • Italian Space Agency
  • University of Rome Tor Vergata
  • Gran Sasso Science Institute
  • Curtin University
  • European Southern Observatory
  • Rhodes University
  • South African Radio Astronomy Observatory
  • Czech Academy of Sciences
  • University of Málaga
  • University of Southampton
  • Instituto de Astrofísica de Andalucía - CSIC
  • Indian Institute of Space Science and Technology
  • Liverpool John Moores University
  • Osservatorio Astronomico ‘S. Di Giacomo’ AstroCampania
  • Inter-University Institute for Data-Intensive Astronomy
  • University of Oxford
  • Cosmic Dawn Center
  • University of Copenhagen
  • Space Telescope Science Institute
  • University of Warsaw
  • University of Iceland
  • George Washington University
  • University of Granada
  • Cardiff University
  • University of Amsterdam
  • Karl Schwarzschild Observatory
  • Radboud University Nijmegen
  • Instituto de Hortofruticultura Subtropical y Mediterránea la Mayora (IHSM/UMA-CSIC)
  • CAS - National Astronomical Observatories
  • Trinity College Dublin
  • Technical University of Denmark
  • Weizmann Institute of Science
  • University of Ferrara
  • University of Rome La Sapienza
  • Atacama Large Millimeter/submillimeter Array
  • Adam Mickiewicz University in Poznań
  • Aryabhatta Research Institute of Observational Sciences
  • University of California at Davis
  • United Arab Emirates University
  • National Science Foundation
  • California Institute of Technology
  • University of Edinburgh
  • University of Birmingham
  • University of Pavia
  • Istituto di Astrofisica Spaziale e Fisica Cosmica di Bologna
  • University of Zaragoza
  • University of Naples Federico II
  • Queen's University Belfast
  • Rice University
  • Special Astrophysical Observatory (SAO-RAS)
  • CSIRO
  • Université Paris Diderot
  • PSL University

Research output: Contribution to journalArticlepeer-review

225 Citations (Scopus)

Abstract

Long-duration γ-ray bursts (GRBs) originate from ultra-relativistic jets launched from the collapsing cores of dying massive stars. They are characterized by an initial phase of bright and highly variable radiation in the kiloelectronvolt-to-megaelectronvolt band, which is probably produced within the jet and lasts from milliseconds to minutes, known as the prompt emission1,2. Subsequently, the interaction of the jet with the surrounding medium generates shock waves that are responsible for the afterglow emission, which lasts from days to months and occurs over a broad energy range from the radio to the gigaelectronvolt bands1–6. The afterglow emission is generally well explained as synchrotron radiation emitted by electrons accelerated by the external shock7–9. Recently, intense long-lasting emission between 0.2 and 1 teraelectronvolts was observed from GRB 190114C10,11. Here we report multi-frequency observations of GRB 190114C, and study the evolution in time of the GRB emission across 17 orders of magnitude in energy, from 5 × 10−6 to 1012 electronvolts. We find that the broadband spectral energy distribution is double-peaked, with the teraelectronvolt emission constituting a distinct spectral component with power comparable to the synchrotron component. This component is associated with the afterglow and is satisfactorily explained by inverse Compton up-scattering of synchrotron photons by high-energy electrons. We find that the conditions required to account for the observed teraelectronvolt component are typical for GRBs, supporting the possibility that inverse Compton emission is commonly produced in GRBs.

Original languageEnglish
Pages (from-to)459-463
Number of pages5
JournalNature
Volume575
Issue number7783
DOIs
Publication statusPublished - 21 Nov 2019

ASJC Scopus subject areas

  • Multidisciplinary

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