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Impulsive and long duration high-energy gamma-ray emission from the very bright 2012 march 7 solar flares

  • M. Ajello
  • , A. Albert
  • , A. Allafort
  • , L. Baldini
  • , G. Barbiellini
  • , D. Bastieri
  • , R. Bellazzini
  • , E. Bissaldi
  • , E. Bonamente
  • , T. J. Brandt
  • , J. Bregeon
  • , M. Brigida
  • , P. Bruel
  • , R. Buehler
  • , S. Buson
  • , G. A. Caliandro
  • , R. A. Cameron
  • , P. A. Caraveo
  • , C. Cecchi
  • , E. Charles
  • A. Chekhtman, J. Chiang, G. Chiaro, S. Ciprini, R. Claus, J. Cohen-Tanugi, L. R. Cominsky, J. Conrad, S. Cutini, F. D'Ammando, F. De Palma, C. D. Dermer, R. Desiante, S. W. Digel, E. Do Couto E Silva, P. S. Drell, A. Drlica-Wagner, C. Favuzzi, W. B. Focke, A. Franckowiak, Y. Fukazawa, P. Fusco, F. Gargano, D. Gasparrini, S. Germani, N. Giglietto, P. Giommi, F. Giordano, M. Giroletti, T. Glanzman, G. Godfrey, I. A. Grenier, J. E. Grove, S. Guiriec, D. Hadasch, M. Hayashida, E. Hays, D. Horan, X. Hou, R. E. Hughes, Y. Inoue, M. S. Jackson, T. Jogler, G. Jóhannesson, A. S. Johnson, W. N. Johnson, T. Kamae, J. Knödlseder, D. Kocevski, M. Kuss, J. Lande, S. Larsson, L. Latronico, F. Longo, F. Loparco, B. Lott, M. N. Lovellette, P. Lubrano, M. Mayer, M. N. Mazziotta, J. E. McEnery, P. F. Michelson, T. Mizuno, A. A. Moiseev, C. Monte, M. E. Monzani, A. Morselli, I. V. Moskalenko, S. Murgia, R. Murphy, T. Nakamori, R. Nemmen, E. Nuss, M. Ohno, T. Ohsugi, N. Omodei, M. Orienti, E. Orlando, J. F. Ormes, D. Paneque, J. H. Panetta, J. S. Perkins, M. Pesce-Rollins, V. Petrosian, F. Piron, G. Pivato, T. A. Porter, S. Rainò, R. Rando, M. Razzano, A. Reimer, O. Reimer, M. Roth, A. Schulz, C. Sgrò, E. J. Siskind, G. Spandre, P. Spinelli, H. Takahashi, J. G. Thayer, J. B. Thayer, D. J. Thompson, L. Tibaldo, M. Tinivella, G. Tosti, E. Troja, T. L. Usher, J. Vandenbroucke, V. Vasileiou, G. Vianello, V. Vitale, M. Werner, B. L. Winer, D. L. Wood, K. S. Wood, Z. Yang
  • University of California, Space Sciences Laboratory
  • Stanford University
  • University of Pisa
  • INFN Sezione di Trieste
  • University of Trieste
  • INFN
  • University of Padova
  • Istituto Nazionale di Fisica Nucleare, Sezione di Pisa
  • INFN Sezione di Perugia
  • University of Perugia
  • NASA Goddard Space Flight Center
  • Politecnico di Bari
  • INFN Sezione di Bari
  • c/o DESY
  • INAF Istituto di Astrofisica Spaziale e Fisica Cosmica, Milan
  • George Mason University
  • Naval Research Laboratory
  • Science and Research Directorate
  • Osservatorio Astronomico di Roma
  • Laboratoire Univers et Particules de Montpellier
  • Sonoma State University
  • Stockholm University
  • Oskar Klein Centre
  • Royal Swedish Academy of Sciences
  • INAF Istituto di Radioastronomia
  • Fermi National Accelerator Laboratory
  • Hiroshima University
  • Université Paris-Diderot
  • Medical University of Innsbruck
  • University of Tokyo
  • UMR 5797
  • The Ohio State University
  • KTH Royal Institute of Technology
  • University of Iceland
  • IRAP/CNRS
  • Observatoire Midi-Pyrénées
  • INFN Sezione di Torino
  • University of Maryland
  • Sezione di Roma
  • Long Beach VA and University of California
  • University of Denver
  • Max-Planck-Institut für Physik
  • University of Washington
  • NYCB Real-Time Computing Inc.
  • Consorzio Interuniversitario per la Fisica Spaziale (CIFS)
  • University of Rome “Tor Vergata”
  • Praxis Inc.

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

Résumé

The Fermi Large Area Telescope (LAT) detected gamma-rays up to 4 GeV from two bright X-class solar flares on 2012 March 7, showing both an impulsive and temporally extended emission phases. The gamma-rays appear to originate from the same active region as the X-rays associated with these flares. The >100 MeV gamma-ray flux decreases monotonically during the first hour (impulsive phase) followed by a slower decrease for the next 20 hr. A power law with a high-energy exponential cutoff can adequately describe the photon spectrum. Assuming that the gamma rays result from the decay of pions produced by accelerated protons and ions with a power-law spectrum, we find that the index of that spectrum is 3, with minor variations during the impulsive phase. During the extended phase the photon spectrum softens monotonically, requiring the proton index varying from ∼4 to >5. The >30 MeV proton flux observed by the GOES satellites also shows a flux decrease and spectral softening, but with a harder spectrum (index ∼2-3). Based on these observations, we explore the relative merits of prompt or continuous acceleration scenarios, hadronic or leptonic emission processes, and acceleration at the solar corona or by the fast coronal mass ejections. We conclude that the most likely scenario is continuous acceleration of protons in the solar corona that penetrate the lower solar atmosphere and produce pions that decay into gamma rays. However, acceleration in the downstream of the shock cannot be definitely ruled out.

langue originaleAnglais
Numéro d'article20
journalAstrophysical Journal
Volume789
Numéro de publication1
Les DOIs
étatPublié - 1 juil. 2014

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